2013-12-31
moldex3d-R12-SP1-download
Moldex3D Products Overview
Moldex3D is the world leading CAE product for the plastics injection molding industry. With the best-in-class analysis technology, Moldex3D can help you simulate the widest application range of injection molding processes to optimize product design and manufacturability, shorten time-to-market, and maximize product ROI.
Features
CAD-Embedded Pre-Processing
Superior Automatic 3D Mesh Engine
High Resolution 3D Mesh Technology
High Performance Parallel Computing
Simplify High-quality Mesh Generation Process
Extends the unrivaled meshing capabilities to offer a very intuitive Boundary Layer Mesh (BLM) generation tool in Moldex3D Designer, giving users who need to prepare advanced analyses a strong boost
Moldex3D CADdoctor Heals Geometrical Problems
Streamlines the model exchange process between CAD and CAE with powerful manual healing functions for maximum flexibility, improving efficiency with faster model repair workflow
Moldex3D Designer BLM Mode and CADdoctor Tutorial
Empower Dynamic Process Capabilities Based on Manufacturing Needs
Compression Molding
Investigates potential defects resulted from heat and pressure, decides appropriate materials, and optimize process conditions. Easily defines compression zones, surfaces, and directions for better production efficiency and enhanced processability
Moldex3D Compression Molding Tutorial
Bi-injection Molding
Assesses the filling pattern of the same plastic material with two colors being injected into a cavity from different gates and predicts welding line locations to enhance the quality of dual-colored products
Powder Injection Molding
Gets accurate at visualizing high-precision and complex metal/ceramic injection molding, helping users predict potential molding defects based on the fluid flow behavior of the feedstock consisted of powder and binder
Moldex3D Powder Injection Molding Tutorial
Strengthen Prediction and Optimization Capabilities through Enhancements
Annealing Process Analysis
Extends simulation calculation to post-molding annealing process, providing a powerful tool to determine processing condition based on the possible annealing method
Co-injection Analysis
Provides users a comprehensive insight into the flow behavior of core materials inside cavities when blow through happens
Core Shift with Two-way (FSI)
Predicts the simulation result of part inserts with two-way FSI method to increase accuracy and improve core deformation
Venting Analysis
Provides trapped air temperature and pressure results
Fiber Analysis
Empowers prediction capabilities on fiber breakage and fiber length distribution results, preventing high shear stress problems
DOE Optimization
Auto Gate Location Function
Identifies the best gate location to achieve flow balance and provide support for single and multiple gate models
Weight Designation of Multiple Quality Factors
Obtains optimal process conditions based on different weighting values of each quality factor
Garrad_Hassan_GH_Bladed_V4.5_tutorial
Bladed provides worldwide wind turbine and component manufacturers, certification agencies, design consultants and research organisations with a design tool that has been extensively validated against measured data from a wide range of turbines. It enables users to conduct the full range of performance and loading calculations. With a Windows-based user interface, it supports calculations of combined wind and wave loading, with full aeroelastic and hydroelastic modelling. It has been validated for the calculation of wind turbine loads for design and certification.
Multibody structural dynamics
Bladed utilises a new, completely self-consistent and rigorous formulation of the structural dynamics. This provides consistently reliable and accurate results and forms a solid foundation from which to continue to extend the structural model with features as part of the ongoing development programme.
Bladed Modules
In addition to the core base module, Bladed has several specialist bolt-on modules covering steady state analysis, dynamic load simulations, analysis of loads and energy capture, batch processing and automated report generation, interaction with the electrical network, and model linearisation for control design. Related information sheets can be downloaded at the bottom right of this page.
Turbine Definition
Turbine Definition
The main toolbar gives access to data entry screens which allow the various turbine components to be defined.
Load Environment
Load Environment
Comprehensive models of complex wind fields, definition models of hydrodynamic forces and an optional seismic module for earthquakes simulations.
Response Calculations
Response Calculations
From blade aerodynamics to power curves: simulations that cover all operational states; flexible control of calculation outputs.
Processing & Reports
Processing & Reports
A powerful post-processing facility to analyse the results of calculations, a graphics facility which allows the user to view results quickly and project management tool to store store and share turbine and calculation definitions.
Bladed Modules
In addition to the core base module, Bladed has several specialist bolt-on modules covering steady state analysis, dynamic load simulations, analysis of loads and energy capture, batch processing and automated report generation, interaction with the electrical network, and model linearisation for control design. Related information sheets can be downloaded at the bottom right of this page.
Turbine Definition
Turbine Definition
The main toolbar gives access to data entry screens which allow the various turbine components to be defined.
Load Environment
Load Environment
Comprehensive models of complex wind fields, definition models of hydrodynamic forces and an optional seismic module for earthquakes simulations.
Response Calculations
Response Calculations
From blade aerodynamics to power curves: simulations that cover all operational states; flexible control of calculation outputs.
Processing & Reports
Processing & Reports
A powerful post-processing facility to analyse the results of calculations, a graphics facility which allows the user to view results quickly and project management tool to store store and share turbine and calculation definitions.
DNV-Nauticus-Hull-2013
Nauticus Hull software
Based on DNV’s strong industry knowledge and expertise, the system provides a highly efficient environment for design and verification. It is a complete structural analysis package, developed by naval architects for naval architects. The system is an important part of the design and verification work for more than 200 users worldwide. High quality technical support and a development strategy based on the latest technology make Nauticus Hull software a safe long-term solution.
Brix Explorer
Brix Explorer is the main entry point to all the Nauticus Hull programs. It organises the work and gives easy access to various templates for typical jobs to be carried out. The user is guided through the relevant tasks and data are gathered in a single database for each job. General information about the ship, such as dimensions, applicable rules, compartment data, loads, etc, is stored in the database and shared by all the programs. The Brix technology will also enable you to build on Nauticus Hull’s pre-defined templates to create your own customised workflows, integrating your best engineering practices.
Benefits of the Nauticus Hull software
Available in different configurations
Uses a common interface across all modules
Intuitive toolbars and design
A complete solution
Nauticus Hull is available in different configurations, from basic Rule Check package to advanced systems for wave load and finite element analyses. For all packages, a common user interface, with intuitive toolbars combined with specialised modelling wizards, minimises the learning period and user threshold. With less time spent on generating models, more time can be spent on essential design-process decisions.
Nauticus Hull covers a wide range of analysis including:
Rule check
High speed light craft
Container securing
3D Beam
Buckling assessment
Nauticus Hull covers a wide range of analysis including:
Rule check
High speed light craft
Container securing
3D Beam
Buckling assessment
OPTIS-SPEOS-CAA-V5-Based-V15.1-tutorial-license
Especially recommended for a first approach to optical simulation in CAD CAM world.
Non-optics specialists will find it particularly easy to use
This module allows you to create any optical model by applying optical properties to all surfaces, materials and light sources.
After defining the optical mockup, you will be able to visualize the rays as they propagate in the mechanical system.
This module comes complete with intelligent abilities to create interactive simulations where rays are propagated through 'active' components in the 3D view. Moreover the rays are propagated with their wavelength information for further analysis by you. Advanced scattering, anisotropic surface & diffusive material generator are also available.
SPEOS CAA V5 Based Windshield Analysis allows CATIA V5 users to test the compliance of a windshield with ECE R43 and SAE Z26 regulations. It enables the simulation of typical experiments, such as sighting target reflection and transmission.
Moreover it provides optical parameters such as deviation, distortion, refractive power to characterize a given windshield; it also allows users to generate the distortion of an image or a video to find out what the effect of the curvature of the windshield shape will be.
SPEOS CAA V5 Based Windshield Analysis provides windshield manufacturers a powerful engineering tool to improve their development process, to speed up their reactivity and to enhance their support to their customers.
SPEOS CAA V5 Based Windshield Analysis gives car manufacturers a validation tool that can be used at all the stages of the design process saving effort on invalid designs, evaluating the impacts of modification and giving them independence from their suppliers.
OPEN-MIND-hyperMILL-2013-tutorial-download
With new functions for familiar strategies, hyperMILL 2013 steps in to further optimise manufacturing processes in order to realise untapped potential in production and make processes more efficient. Specifically, this means reducing programming and manufacturing times more than ever before and constantly improving surface quality.
hyperMAXX® for 2D pocket milling
The dynamic feedrate adjustment of hyperMAXX® (High Performance Cutting) reduces milling times, increases tool life and prolongs machine life. hyperMAXX® is fully integrated in hyperMILL® and can be opened as an optimisation strategy for 2D pocket milling, 3D arbitrary stock roughing and 5axis shape offset roughing.
Tool life can be tripled
Constant load on tool and machine
Machining operations always with climb milling
No sharp edges or sudden changes in milling direction
No post-processor adjustments required
Benefit: Significantly longer tool life, dramatically reduced machining times.
New “Rib Machining” cycle
OPEN MIND worked together with one of Germany's largest automotive manufacturers to develop the new “Rib Machining” cycle to program negative rib shapes. This feature automatically detects grooves to be milled. Steep areas and floors are machined separately.
Pocket machining and collision avoidance (shaft and tool against stock, trim curve and model) are integrated in the cycle. The system selects a suitable roughing strategy based on the geometric situation at hand. Contiguous areas are completely machined. The cycle supports tapered and conically strengthened tools.
Benefit: Trouble-free programming of negative rib shapes, shorter machining times and a higher level of quality.
Shape offset finishing
Barrel cutter shapes that enable larger infeed are now supported by hyperMILL®.
Benefit: Very short machining times and optimised surface quality.
New, spiral movement sequences enable a constant, continuous infeed.
Benefit: Better surface quality.
Tire module
The module allows the user to easily program tire projects. A special Tire Browser and user interface was developed to create and edit tire definitions. These tire definitions can reach a high level of complexity and account for multiple tracks.
Intelligent automated functions facilitate fast programming of individual pitches or pitches combined in pairs. Automatic segment program generation allows you to trim, sort and link tool paths with collision monitoring. It is possible to automatically generate segment surface geometries trimmed to segment splits. Numerous tire-specific 5axis strategies deliver maximum efficiency when machining tire moulds.
Benefit: Simple interface to external systems; quickly create the tire definition; extremely simple programming of individual pitches; optimised and secure segment programs; significantly reduced programming and machining times.
new verison for hypermill 2014
Benefit: Significantly longer tool life, dramatically reduced machining times.
New “Rib Machining” cycle
OPEN MIND worked together with one of Germany's largest automotive manufacturers to develop the new “Rib Machining” cycle to program negative rib shapes. This feature automatically detects grooves to be milled. Steep areas and floors are machined separately.
Pocket machining and collision avoidance (shaft and tool against stock, trim curve and model) are integrated in the cycle. The system selects a suitable roughing strategy based on the geometric situation at hand. Contiguous areas are completely machined. The cycle supports tapered and conically strengthened tools.
Benefit: Trouble-free programming of negative rib shapes, shorter machining times and a higher level of quality.
Shape offset finishing
Barrel cutter shapes that enable larger infeed are now supported by hyperMILL®.
Benefit: Very short machining times and optimised surface quality.
New, spiral movement sequences enable a constant, continuous infeed.
Benefit: Better surface quality.
Tire module
The module allows the user to easily program tire projects. A special Tire Browser and user interface was developed to create and edit tire definitions. These tire definitions can reach a high level of complexity and account for multiple tracks.
Intelligent automated functions facilitate fast programming of individual pitches or pitches combined in pairs. Automatic segment program generation allows you to trim, sort and link tool paths with collision monitoring. It is possible to automatically generate segment surface geometries trimmed to segment splits. Numerous tire-specific 5axis strategies deliver maximum efficiency when machining tire moulds.
Benefit: Simple interface to external systems; quickly create the tire definition; extremely simple programming of individual pitches; optimised and secure segment programs; significantly reduced programming and machining times.new verison for hypermill 2014
DNV-Sesam-2013-tutorial
Sesam GeniE software
The Sesam GeniE software is a software tool for designing and analyzing offshore and maritime structures made of beams and plates. Modelling, analysis and results processing are performed in the same graphical user interface. The use of concept technology makes the Sesam GeniE software highly efficient for integrating stability, loading, strength assessment and CAD exchange. All data are persistent enabling the engineers to do efficient iterative re-design of a structure.
Sesam GeniE software for:
Fixed structures
The analysis – hydrodynamic as well as strength calculations – and evaluation of results are done within the Sesam GeniE software. The software is built for frequent changes in both structural and equipment layout – any modification performed on a concept level will give an automatic updated and consistent analysis model.
Hydrodynamic design of floating structures
The Sesam HydroD software is a tool for hydrostatic and hydrodynamic analysis. By integrating these tasks, significant cost savings may be achieved in the engineering phase since the same panel model may be used by one tool.
Sesam HydroD software will perform compliance checks against statutory rules for stability including the importance of integrity of the deck tanks. Floating positions may be determined as a result of actual mass and buoyancy or from an automatic compartment filling to satisfy specified position.
The Sesam DeepC software is a tool for mooring and riser design as well marine operations of offshore floating structures. It will perform mooring analysis separately or when including the coupled effects from risers and vessels. Furthermore, Sesam DeepC software may be used for riser design where the risers are analyzed separately or when considering coupling effects. Marine operations may be simulated in the time domain for a study of motions and station keeping of multibody systems.
The Sesam HydroD software is a tool for hydrostatic and hydrodynamic analysis. By integrating these tasks, significant cost savings may be achieved in the engineering phase since the same panel model may be used by one tool.
Sesam HydroD software will perform compliance checks against statutory rules for stability including the importance of integrity of the deck tanks. Floating positions may be determined as a result of actual mass and buoyancy or from an automatic compartment filling to satisfy specified position.
The Sesam DeepC software is a tool for mooring and riser design as well marine operations of offshore floating structures. It will perform mooring analysis separately or when including the coupled effects from risers and vessels. Furthermore, Sesam DeepC software may be used for riser design where the risers are analyzed separately or when considering coupling effects. Marine operations may be simulated in the time domain for a study of motions and station keeping of multibody systems.
2013-06-04
DHI_MIKE_Zero_ 2012_tutorial_crack
MIKE 21 is one of the most well established tools for simulating the development in the river bed and channel plan form caused by changes in the hydraulic regime.
Simulated processes include bank erosion, scouring and shoaling brought about by activities such as construction and dredging or seasonal fluctuations in flows.
Typical MIKE 21C applications:
Design protection schemes against bank erosion
Evaluate measures to reduce or manage shoaling
Analyse alignments and dimensions of navigation channels for minimising maintenance dredging
Predict sedimentation of water intakes, outlets, locks, harbours and reservoirs
Forecast the impact of bridge, tunnel and pipeline crossings on river channel hydraulics and morphology
Optimise restoration plans for habitat environment in channel floodplain systems
MIKE 21 is a specialised tool for the serious river morphology modeller. It is, in a sense, DHI’s collective knowledge made available to river engineers.
19 out of 20 of the world’s leading consultants are using MIKE products for their coastal and marine modeling projects. When asked, they say that they prefer the MIKE products because it gives them:
Increased productivity
Outstanding technical support
A full range of tools covering all their marine modeling needs
Superb training - on location in their own language
The marine MIKE products are proven technology. Thousands of projects have been successfully completed using MIKE 21, MIKE 3 or one of the other marine MIKE products. The MIKE products are accepted for virtually any marine modeling job anywhere in the world.
Take a look at the user applications and on-line demonstrations to judge for yourself if the MIKE products will be able to cover your modeling needs. And feel free to ask for a live demonstration, if you want to learn more before you decide.
2013-06-02
DP.ESPRIT-v2013-download-crack
ESPRIT® 2013, the latest version of the innovative computer-aided manufacturing (CAM) software developed by DP Technology Corp., will be exhibited June 18-20 at Atlantic Design & Manufacturing at the Pennsylvania Convention Center in Philadelphia, Penn.
ESPRIT will be exhibited at booth No. 4302, where visitors will receive one-on-one demonstrations and presentations of features available within the latest generation of the software. ESPRIT offers upgrades in all machining disciplines, including enhancements to turning, milling, mill-turn and wire EDM cycles.
New to ESPRIT 2013, the patent-pending ProfitMilling strategy for 2-, 3-, 4- and 5-axis roughing cycles allows customers to remove more material in a shorter amount of time. ProfitMilling is a high-speed roughing cycle that allows you to take a significantly deeper cut of the tool and increase the cutting feed. Rather than controlling just one parameter, ProfitMilling monitors several vital cutting and machine characteristics.
The ProfitMilling toolpath manages chip load and side-cutter force in the calculation of toolpath while keeping the engagement angle and material removal rate within a specific range. It also incorporates dynamic feedrate changes throughout the toolpath and takes advantage of toolpath optimization for specific machine capabilities.
Program any Machine Tool
The high-performance ESPRIT system offers powerful programming for any CNC machine tool. ESPRIT's full-spectrum functionality includes programming for 2-5 axis milling, 2-22 axis turning, 2-5 axis wire EDM, multitasking mill-turn machining, and B-axis machine tools. Streamline your operations with the powerful and flexible ESPRIT system, valued by CNC programmers for its extensive suite of machining cycles, comprehensive tool control, and capacity to fully support an entire shop.
Machine any Part Geometry
ESPRIT's seamless CAD to CAM interface directly imports any native part model from any source, fully intact, with no need for programmers to edit or rebuild geometry. ESPRIT directly machines from any combination of geometries — solids, surfaces, wireframe, or STL — providing you with complete manufacturing flexibility. Starting with 100%complete and accurate part geometry eliminates nearly all of the difficulty in programming complicated parts and dramatically reduces programming time.
Universal Post Processing
ESPRIT's universal post processor effortlessly creates the high-quality G-code you need to fully exploit your machine tool investment. With ESPRIT you get proven out-of-the-box operation with a complete library of pre-defined post processors. Additional factory-certified posts are available for many of the leading machine tool brands, and ESPRIT's open architecture allows you to easily adjust any post processor to suit your personal preferences and shopfloor requirements. ESPRIT's flawless G-code means you will spend more time cutting parts, giving you maximum machine utilization and optimal part quality at the lowest possible cost.
Dynamic Solid Simulation and Verification
ESPRIT's fast, accurate, and reliable dynamic solid verification eliminates the need for expensive dry runs on the NC machine. Gain complete confidence in your machining process as you compare accurately rendered "as designed " versus "as machined" parts. High-performance, real-time simulation and comprehensive collision detection ensure that even the most complex of parts will be machined correctly the first time. ESPRIT gives you exhaustive verification of the part program simulated within a complete machining environment: machine tool, fixtures, clamps, stock, and workpiece. Minimize downtime, maximize manufacturing efficiency, and cut machining costs while gaining complete confidence in your machining processes with ESPRIT.
Program any Machine Tool
The high-performance ESPRIT system offers powerful programming for any CNC machine tool. ESPRIT's full-spectrum functionality includes programming for 2-5 axis milling, 2-22 axis turning, 2-5 axis wire EDM, multitasking mill-turn machining, and B-axis machine tools. Streamline your operations with the powerful and flexible ESPRIT system, valued by CNC programmers for its extensive suite of machining cycles, comprehensive tool control, and capacity to fully support an entire shop.
Machine any Part Geometry
ESPRIT's seamless CAD to CAM interface directly imports any native part model from any source, fully intact, with no need for programmers to edit or rebuild geometry. ESPRIT directly machines from any combination of geometries — solids, surfaces, wireframe, or STL — providing you with complete manufacturing flexibility. Starting with 100%complete and accurate part geometry eliminates nearly all of the difficulty in programming complicated parts and dramatically reduces programming time.
Universal Post Processing
ESPRIT's universal post processor effortlessly creates the high-quality G-code you need to fully exploit your machine tool investment. With ESPRIT you get proven out-of-the-box operation with a complete library of pre-defined post processors. Additional factory-certified posts are available for many of the leading machine tool brands, and ESPRIT's open architecture allows you to easily adjust any post processor to suit your personal preferences and shopfloor requirements. ESPRIT's flawless G-code means you will spend more time cutting parts, giving you maximum machine utilization and optimal part quality at the lowest possible cost.
Dynamic Solid Simulation and Verification
ESPRIT's fast, accurate, and reliable dynamic solid verification eliminates the need for expensive dry runs on the NC machine. Gain complete confidence in your machining process as you compare accurately rendered "as designed " versus "as machined" parts. High-performance, real-time simulation and comprehensive collision detection ensure that even the most complex of parts will be machined correctly the first time. ESPRIT gives you exhaustive verification of the part program simulated within a complete machining environment: machine tool, fixtures, clamps, stock, and workpiece. Minimize downtime, maximize manufacturing efficiency, and cut machining costs while gaining complete confidence in your machining processes with ESPRIT.
2013-05-31
Genesis_2000_v10_Frontline_tutorial_download
The new Genesis Backup tool enables you to backup jobs on a network
repository and restore them when you need them. Among other benefits,
this enables you to keep several versions of the same job.
The Backup and Restore functions are part of the Filemenu in the
Engineering Toolkit.
Here you can select the jobs to be restored or deleted. You can filter your
selection according to a number of different criteria:
• Genesis user name
• Customer name
•Data Repository name
• Date when job was last accessed, backed up, or created
• User-designed custom filter created with the same methods used to
create job filters in the Genesis clipboard.(See Doc. 102, Engineering
Toolkit, for more information on creating job filters.)
Once the list of jobs appears in the display area, you can select only those
jobs that require further processing.
• Select the desired jobs by clicking on the job name.
• Select multiple jobs by holding down the CTRLkey and then clicking
on the job names desired.
You may Select Alljobs that appear in the list by clicking the appropriate
button. Or you may clear the list and start over by clicking Clear All.
Creating a Backup Repository
To create a backup repository:
1. Create a folder in which you will place the configuration and setup files.
Example: C:\genesis\backup.
2. Define a new environment variable, FRONTLINE_BACKUP_DIR, and
then add the path to the backup folder in the variable definition.
3. Inside the backup folder indicated by FRONTLINE_BACKUP_DIR,
insert two new text files bakdblistand bakconfig. Update them according
to the instructions below
New Resize Algorithm
A new algorithm for the Resize operation, introduced in Version 10.0,
eliminates all unexpected behaviors that may occur during Resize
operations. It also improves Fill and Pattern Fill operations.
I/O
Support for Input of New IPC2581A Format
As of version 10, Genesis can support input in the new IPC2581A format.
This is a licensed option - it requires the inp2581license. Data input is
carried out through the standard Import Job function.
Disclaimer
This input was tested only on the sample data provided by the
IPC2581 consortium. Frontline recommends at this stage to ask
customers to send reference data (ODB++ or RS274X) to validate the
input.
Graphic Editor
Interactive Spacing Repair Editor
Introduction
The Interactive Spacing Editorenables you to define spacing
requirements between two selected features at the start of the editing
process, and provides the tools necessary to change one or both features in
order to obtain the desired spacing.
Note If the two selected features touch each other, definition of spacing
requirements cannotbe performed.
There is often a need to resolve interactively spacing problems between
board features. The features could be on the same layer (copper2copper,
clearance2clearance) or on different layers (clearance2copper,
drill2copper, rout2copper). Genesis provides a number of DFM actions to
resolve spacing difficulties, but these DFM actions cannot solve ALL
possible spacing problems, as it would be far too complicated to define
rules that would cover every possible spacing repair problem. A better
solution would be to create automaticDFM actions to solve the majority
of definable spacing problems, and use an interactive tool to repair the
more complex, or less obvious, problems.
Existing Genesis repair tools enable you to move and stretch different
features on a board, but none of these tools enables you to define the
spacing required between features as a starting point of the editing
Here you can select the jobs to be restored or deleted. You can filter your
selection according to a number of different criteria:
• Genesis user name
• Customer name
•Data Repository name
• Date when job was last accessed, backed up, or created
• User-designed custom filter created with the same methods used to
create job filters in the Genesis clipboard.(See Doc. 102, Engineering
Toolkit, for more information on creating job filters.)
Once the list of jobs appears in the display area, you can select only those
jobs that require further processing.
• Select the desired jobs by clicking on the job name.
• Select multiple jobs by holding down the CTRLkey and then clicking
on the job names desired.
You may Select Alljobs that appear in the list by clicking the appropriate
button. Or you may clear the list and start over by clicking Clear All.
Creating a Backup Repository
To create a backup repository:
1. Create a folder in which you will place the configuration and setup files.
Example: C:\genesis\backup.
2. Define a new environment variable, FRONTLINE_BACKUP_DIR, and
then add the path to the backup folder in the variable definition.
3. Inside the backup folder indicated by FRONTLINE_BACKUP_DIR,
insert two new text files bakdblistand bakconfig. Update them according
to the instructions below
New Resize Algorithm
A new algorithm for the Resize operation, introduced in Version 10.0,
eliminates all unexpected behaviors that may occur during Resize
operations. It also improves Fill and Pattern Fill operations.
I/O
Support for Input of New IPC2581A Format
As of version 10, Genesis can support input in the new IPC2581A format.
This is a licensed option - it requires the inp2581license. Data input is
carried out through the standard Import Job function.
Disclaimer
This input was tested only on the sample data provided by the
IPC2581 consortium. Frontline recommends at this stage to ask
customers to send reference data (ODB++ or RS274X) to validate the
input.
Graphic Editor
Interactive Spacing Repair Editor
Introduction
The Interactive Spacing Editorenables you to define spacing
requirements between two selected features at the start of the editing
process, and provides the tools necessary to change one or both features in
order to obtain the desired spacing.
Note If the two selected features touch each other, definition of spacing
requirements cannotbe performed.
There is often a need to resolve interactively spacing problems between
board features. The features could be on the same layer (copper2copper,
clearance2clearance) or on different layers (clearance2copper,
drill2copper, rout2copper). Genesis provides a number of DFM actions to
resolve spacing difficulties, but these DFM actions cannot solve ALL
possible spacing problems, as it would be far too complicated to define
rules that would cover every possible spacing repair problem. A better
solution would be to create automaticDFM actions to solve the majority
of definable spacing problems, and use an interactive tool to repair the
more complex, or less obvious, problems.
Existing Genesis repair tools enable you to move and stretch different
features on a board, but none of these tools enables you to define the
spacing required between features as a starting point of the editing
Predator_CNC_Editor_v10_tutorial
Predator MDC v10.0.156 improves all charts with a new Chart Zoom feature via CTRL+Left mouse and pressing the R key to return to the previous view. In addition, the Machine Timeline chart has been significantly improved. Specifically the following improvements have been made:
Improved CSV import support to import commas, double quotes and optional double quotes
Improved Machine Timeline Chart with new command filter
Improved Machine Timeline with new CTRL+Left and CTRL+Right arrow support for next and previous tooltip events
Improved Machine Timeline with better event display and tooltips
Improved My Favorites to honor additional chart options and chart permissions
Improved Event Time Analysis chart to default to drilldown style
Eliminated Trend Analysis chart combinations that are not feasible
Improved MDC APIs to have a v10 specific reference. Non script IDEs need to update to the new MDC API object reference
Improved Splash screen display for specific screen resolutions
Improved upgrade dialog to eliminate virtual network IDs
Improved English, Chinese, Spanish, Japanese, Turkish, Polish, French, German, Italian and Portuguese language resources
Improved online help with additional topics and fixed a number of help IDs
Fixed a bug with function keys and the New Event dialog
Fixed a bug when switching between multiple databases
Predator PDM Enterprise has enhanced the shopfloor dialogs with New Machine Events and Tracker style Check In and Out dialogs. In addition, the following improvements have been made:
Added -UNRELEASED to change manufacturing and quality status workflow
Improved online help
Improved -viewvaultitem command line to support wildcards
Improved -viewvaultitemdialog command line to support wildcards
Improved machine wizards
Improved the Oracle database login screen
Improved displaying the database name and host within the statusbar
Improved check out warning message
Improved display of LF only style CNC files within the shop floor windows
Fixed a bug with editing a list item
Added -UNRELEASED to change manufacturing and quality status workflow
Improved online help
Improved -viewvaultitem command line to support wildcards
Improved -viewvaultitemdialog command line to support wildcards
Improved machine wizards
Improved the Oracle database login screen
Improved displaying the database name and host within the statusbar
Improved check out warning message
Improved display of LF only style CNC files within the shop floor windows
Fixed a bug with editing a list item
powerbench v3.4.1_tutorial
Fugro-Jason announced today the availability of PowerBench Geology for geological interpretation. This addition to the PowerBench suite was acquired from a large independent oil company that had invested more than 20 years in developing the underlying technology. PowerBench is a Windows®-based application suite for Geology, Geophysics, Petrophysics, and Engineering.
''Geological interpretation is fundamental to providing a single consistent model of the earth,'' said Eric Adams, Managing Director of Fugro-Jason. ''Through this strategic acquisition we were able to add time-tested capability to PowerBench and make that capability available to our customers very rapidly.''
PowerBench Geology enables unified handling of subsurface geology, well bore equipment and production data. It features an integrated base map and interpretation canvas that handles tens of thousands of wells quickly and efficiently, and a geologic cross section builder that features structural and stratigraphic cross section interpretation. The PowerBench suite encompasses the E&P workflow and includes petrophysical interpretation, seismic and rock property volume interpretation, geologic interpretation, mapping, framework and 3D property modeling, and streamline simulation.
PowerBench Geology enables unified handling of subsurface geology, well bore equipment and production data. It features an integrated base map and interpretation canvas that handles tens of thousands of wells quickly and efficiently, and a geologic cross section builder that features structural and stratigraphic cross section interpretation. The PowerBench suite encompasses the E&P workflow and includes petrophysical interpretation, seismic and rock property volume interpretation, geologic interpretation, mapping, framework and 3D property modeling, and streamline simulation.
Mastercam_x7_v16.05_crack_tutorial
Mastercam X7 also includes Mastercam Mill-Turn, designed to simplify programming for complex Mill-Turn machines.
IMPORTANT If you are interested in purchasing this product, please contact your local Mastercam reseller.
The centerpiece of Mill-Turn is the Code Expert application. Like the new Tool Manager, the Code Expert runs in the new Extensions window. Code Expert incorporates an entire suite of tools for managing multitasking applications.
Mastercam is known for powerful NC programming. But it also delivers a suite of shop-tested design tools including 3D surfacing and solids.
Click on the above tabs for a quick overview of CAD choices. Or choose from the buttons on the right for more detailed information.
What does this mean for you? It means that when you choose Mastercam, you’re using innovative CAM software that has helped more shops achieve success than any other. It also means that skilled Mastercam users are much easier to find.
Mastercam’s Support is Second to None
Mastercam is supported by a worldwide network of dedicated, expert resellers who focus exclusively on ensuring that Mastercam fits your needs. They know the software, know your area, and are there when you need them.
Mastercam also enjoys a large online user community that offers advice, help, tips and tricks to fellow Mastercam programmers.
Mastercam is Dedicated to the Future
As one of the pioneers in PC-based CAD/CAM, Mastercam has a long history of company security and health. As a privately-owned company, we continue to focus exclusively on the needs of NC programmers. And as a CAD/CAM innovator, we’ll be here to work with you as you move into the future.
Mastercam also enjoys a large online user community that offers advice, help, tips and tricks to fellow Mastercam programmers.
Mastercam is Dedicated to the Future
As one of the pioneers in PC-based CAD/CAM, Mastercam has a long history of company security and health. As a privately-owned company, we continue to focus exclusively on the needs of NC programmers. And as a CAD/CAM innovator, we’ll be here to work with you as you move into the future.
SDS/2-v7.313-Design-Data-download-crack
SDS/2 Detailing offers the highest level of automation and intelligence available in 3D steel detailing.
As the detailer inputs members, like columns and beams, connections are automatically designed with their necessary materials, bolts, holes and welds. SDS/2 Detailing takes a uniquely intelligent approach in its connection design by considering framing conditions and erectibility, automatically performing clash prevention as a part of its connection design. In addition, SDS/2 Detailing can value engineer the connections on a project, helping users to design the most economical connections to fabricate and erect. No other 3D detailing product can do this automatically.
SDS/2’s expanded design calculations give users the full formulas for all force checks of connections. With SDS/2, users can see how the software arrives at the connection results, and assists engineers in reviewing
SDS/2 Approval supports AISC's methodology for model approval by allowing communications like sketches, addendums and RFIs, as well as status updates, to be stored and exchanged via the 3D model. Whether you choose to approve models on a project using the Hybrid method of the Full Model Approval method, there is an SDS/2 solution that supports either approach.
The free SDS/2 Viewer allows the model to be used as a supplemental tool to more easily verify drawings. From the model, engineers can view information during the approval process, like connection design calculations, material information, member status and more.
Using SDS/2 Approval, engineers can receive submittals via the model, and then use it to approve, reject or note changes to be made. They can then transmit that information back to the detailer or fabricator's model via tools provided by SDS/2 Approval.
SDS/2 Approval supports AISC's methodology for model approval by allowing communications like sketches, addendums and RFIs, as well as status updates, to be stored and exchanged via the 3D model. Whether you choose to approve models on a project using the Hybrid method of the Full Model Approval method, there is an SDS/2 solution that supports either approach.
The free SDS/2 Viewer allows the model to be used as a supplemental tool to more easily verify drawings. From the model, engineers can view information during the approval process, like connection design calculations, material information, member status and more.
Using SDS/2 Approval, engineers can receive submittals via the model, and then use it to approve, reject or note changes to be made. They can then transmit that information back to the detailer or fabricator's model via tools provided by SDS/2 Approval.
2012-11-13
Zemax_2012_v12_for_64_bit
Zemax 12 Release 2 is the most capable optical and illumination design software
ever published.
Zemax 12 is the perfect tool to design, optimize, and tolerance optical systems. Your system may include refractive, reflective, diffractive, sequential, or non-sequential elements in any combination.
Zemax 12 is available in three editions: Zemax IE, Zemax EE and Zemax SE. Compare them here.
You can use Zemax for
classical lens design, including powerful optimization and tolerancing
illumination and stray light, using fully unconstrained non-sequential ray-tracing
laser beam propagation, using powerful physical optics modelling
All of these powerful features are integrated into an intuitive user interface. Zemax offers power, speed, flexibility, ease of use, and value in one comprehensive program.
Zemax is the perfect tool to design, optimize, and tolerance optical systems. Your system may include refractive, reflective, diffractive, sequential, or
non-sequential elements in any combination.
You can use Zemax for
classical lens design, including powerful optimization and tolerancing
illumination and stray light, using fully unconstrained non-sequential ray-tracing
laser beam propagation, using powerful physical optics modelling
All of these powerful features are integrated into an intuitive user interface. Zemax offers power, speed, flexibility, ease of use, and value in one comprehensive program.
2012-11-09
ucam_v10_crack_download
Ucamco have now released UCAM Version 10, making Visual HyperScripts more powerful and even easier to set up. New commands extend Visual HyperScripting to automate data preparation for electrical test. New functionality based on the feedback from users makes it easier to start scripting and to share scripts across a company. At the same time Ucamco have put a short training video on their website which shows how Visual HyperScripts cut CAM time and how to start to use it.
Flexible circuitry and Tape Automatic
Bonding (TAB) is the fastest growing area
of PCB fabrication, but it brings special
production challenges. Developments
which brought high yields and high
productivity for rigid boards need to be
rethought. Increasingly complex and
increasingly diverse build structures, new
materials and new technologies impose
new demands on CAM, design verification,
yield optimization and tool generation.
Many earlier automation technologies are
now ineffective.
The Solution
Ucamco’s new UCAM UFLEX software has
been launched in response these
challenges. Powerful tool-sets help product
engineers develop innovative and effective
solutions for cutting-edge designs, while
highly flexible automation routines take
care of the repetitive and time-consuming
manual tasks which hamper engineering
creativity.
DFR – Design for Reliability
Tebis_v3.5 _download_crack
Tebis (Technische Entwicklung Beratung und Individuelle Software) is a CAD/CAM program supplied by Tebis Technische Informationssysteme AG headquartered in Martinsried near Munich/Germany.
Functionality
Tebis v3.5 is a CAD/CAM software solution for applications such as die, mold or model making. The software is primarily used in the generation of toolpaths for chip-breaking manufacturing such as drilling and milling, but also in Wire EDM and Electrode EDM. These toolpaths control multi-axis CNC machines. Other applications include manufacturing planning, design, reverse engineering, quality assurance, CNC machining and assembly. The software features interfaces for neutral file formats as well as proprietary formats of third-party manufacturers (STEP 203/214, VDAFS, IGES, DXF, STL, Parasolid, Catia V4/V5, ProE, SolidWorks, NX).
Tebis offers a number of different CAD upgrade options. Six different CAD modules can be added to the Tebis Base, already including wire frame model design:
Surface Design
Advanced Surface Design
Digitized Data Processing
Faro integration
Qualifier – Evaluating surface models
Surfacer – Improving surface models
Reverser – Generating design surfaces
Healer – Repairing design surfaces
Optimizer – Class A level surfaces
Morpher – Deforming surface models
Electrode Design
Feature Design
These options let you configure your CAD/CAM workstations to meet the needs of the application at hand. You can also choose from a number of geometry interfaces to meet your particular requirements and thus be compatible with everyone involved in the manufacturing process.
Structure tree
See at a glance whether a layer has subordinate layers and whether these contain elements. Thanks to the new symbols you will be able to recognize structures much faster.
JT interface
The new JT interface expands the spectrum of data that can be imported in Tebis. The import of this open data format which is proposed but not yet ISO standardized is now possible without work-arounds and loss of data.
Splitting topologies
We completely revised the TOP/REMOVE function. You can split topologies in the shortest time possible: simply drag selected objects from the topology and maintain the overview. Use colors or tangentiality to expand your selection, and, at the same time, lock it for flat or steep areas. You can use the same method to remove objects from your selection. Store your selected objects as a new topology. Regardless the size of the part, you can quickly split it for design or manufacturing.
Closing cavities
Filling holes or closing cavities – no problem with the new FILL function. Use neighboring surfaces to create fill surfaces for areas with four or more boundary curves. An analysis indicates in real time whether your selected strategy is suitable for these fill areas. And as a last resort, you can quickly add a few connecting curves. All of this within the same function.
Deep-hole drilling features
Create deep-hole drilling features: Select a blank, select features, and you are done. Features are extended, given a spot facing, a counterbore, or a pilot depth – everything happens automatically.
Morpher
Use the new deformation rule ROT (ROTatory deformation). With this function, you rotate the surfaces instead of shifting them, for example, when folding out a flange. Select the geometry to be deformed, specify the deformation target, check using the distance analysis, and you are done. There are just three steps to a deformation – and all of them without hassles.
Overall tool set
Are you used to programming several machining operations and the same number of tool sets? This is a thing of the past, because you can now specify a single
2012-10-06
Garrad_Hassan_GH_Bladed_V4.1
GH-Bladed download provides worldwide wind turbine and component manufacturers, certification agencies, design consultants and research organisations with a design tool that has been extensively validated against measured data from a wide range of turbines. It enables users to conduct the full range of performance and loading calculations. With a Windows-based user interface, it supports calculations of combined wind and wave loading, with full aeroelastic and hydroelastic modelling. It has been validated by Germanischer Lloyd for the calculation of wind turbines loads for design and certification.
Multibody structural dynamics
Bladed utilises a new, completely self-consistent and rigorous formulation of the structural dynamics. This provides consistently reliable and accurate results and forms a solid foundation from which to continue to extend the structural model with features as part of the ongoing development programme.
Turbine Definition
The main toolbar gives access to data entry screens which allow the various turbine components to be defined, including:
Rotor
Blades
Drive Train
Generator & Electrical
Control
Tower & Nacelle
Bladed Modules
In addition to the core base module, Bladed has several specialist bolt-on modules covering steady state analysis, dynamic load simulations, analysis of loads and energy capture, batch processing and automated report generation, interaction with the electrical network, and model linearisation for control design. Related information sheets can be downloaded at the bottom right of this page.
Wind Field Model
Bladed includes comprehensive models of the complex wind fields which can excite the turbine.
3-dimensional, 3-component models of atmospheric turbulence
Various turbulence spectra and coherence models
Transients in wind speed, direction, and shear as specified in the design standards
Wind shear (exponential or logarithmic models)
Upflow
Tower shadow, upwind and downwind
Eddy viscosity model of upwind turbine wake
2012-09-27
GibbsCAM_2012_v10.3.7_download
GibbsCAM 2012 Production Milling supports 2-axis through simple 3-axis wireframe machining with full functionality for contouring, pocketing with unlimited bosses/islands, thread milling, face milling, 2D/3D spiral creation, drilling with support for many drill cycles, tapping, and boring. Simple 4th-axis positioning is also supported. Automatic cycles for face milling, such as spiral, zig-zag, back and forth and one direction, allow material to be cleaned off the top of a part. GibbsCAM Production Milling provides easy-to-use, powerful programming capability for your machine tools.
Gibbs and Associates, developer of GibbsCAM 2012 software for programming CNC machine tools and a Cimatron (NASDAQ: CIMT) company, today announced its leadership role in supporting phase one of the DMG/Mori Seiki standardization initiative. It will ultimately provide DMG/Mori Seiki customers a smooth and reliable flow of programming data from any CAM system to DMG/Mori Seiki machine controls. This will enable the full use of the features of their machines and controls without the need for custom post-processors or machine simulation models. The technology is based upon DMG/Mori Seiki’s implementation of the standard APT (automatically programmed tool) language, with DMG/Mori Seiki extensions that are supported within GibbsCAM. DMG/Mori Seiki’s initial focus during phase one is on its 3- to 5-axis machining centers and controls, with an ultimate goal of enabling the technology for all of its machines, including the most challenging multi-task machines. As new machines and machine functions are introduced, DMG/Mori Seiki and Gibbs will incorporate the new capabilities into their APT implementation.
GibbsCAM to Support Multiple Machine Tool Builders at IMTS
Parts to be Programmed with GibbsCAM 2012+ and Live Personal Demonstrations
Moorpark, CA - August 27, 2012
Gibbs and Associates, developer of GibbsCAM® software for programming CNC machine tools and a Cimatron (NASDAQ: CIMT) company, today announced that it will support various machine tool companies with its GibbsCAM 2012+ NC programming software at the International Machine Technology Show (IMTS 2012), September 10-15, 2012, at McCormick Place, Chicago. Some machine tool builders will be machining parts programmed with GibbsCAM, while others will also host GibbsCAM demonstrations, highlighting the software’s latest capabilities and its leadership in programming high-speed machining and multi-task and multi-axis machines. GibbsCAM 2012+ includes new features and enhancements across the product line, with a continued emphasis on ease of use, so that customers can achieve the highest speed, accuracy, efficiency and reliability in programming. In addition to supporting machine tool partners, GibbsCAM will have its own exhibit in Booth E-3310.
Autoform_plus_r4_download
AutoForm plus r4-Incrementalplus
Rapid and Accurate Simulation and Validation of the Complete Stamping Process
AutoForm-ThermoSolver
AutoForm-ThermoSolver
Efficient Simulation of Hot Forming and Quenching Processes
AutoForm-DieDesigner
AutoForm-DieDesigner
3D-Die-Layout and Process Optimization
AutoForm-Sigma
AutoForm-Sigma
Sensitivity Analysis, Optimization and Robustness
AutoForm-Compensator
AutoForm-Compensator
Geometry Compensation of Part and Tool Based on Springback Results
AutoForm-Trim
AutoForm-Trim
Automatic Determination of Optimum Trim Line and Blank Outline
AutoForm-ProcessPlanner
AutoForm-ProcessPlanner
Effective Process Planning
AutoForm-CostCalculator
AutoForm-CostCalculator
Rapid Production Sequence Definition with Sophisticated Tool Cost Calculation
AutoForm-BlankDesigner
AutoForm-BlankDesigner
Rapid Design of Cost-Optimized Blanks
AutoForm-Nest
AutoForm-Nest
Cost-Optimized Nesting of Blanks
AutoForm-OneStep
AutoForm-OneStep
Engineering Manufacturable Sheet Metal Parts
AutoForm-PartDesigner
AutoForm-PartDesigner
Easy and Rapid Part Modifications
AutoForm-DieAdviser
AutoForm-DieAdviser
Optimal Wear Protection
AutoForm Hydroforming
AutoForm Hydroforming
Rapid Analysis and Simulation of Entire Hydroforming Design Chain
AutoForm-DataManager
AutoForm-DataManager
Efficient Management of AutoForm Data
AutoForm-ReportManager
AutoForm-ReportManager
Creating Presentation Reports of AutoForm Results
AutoForm-HemPlanner
AutoForm-HemPlanner
Efficient Planning of Hemming Processes
AutoForm-ProcessDesigner^forCATIA
AutoForm-ProcessDesignerforCATIA
Rapid Creation of CAD Quality Die Faces
AutoForm-OneStep^forCATIA
AutoForm-OneStepforCATIA
OneStep Feasibility Assessment inside CATIA
AutoForm-CATIA5
AutoForm-CATIA5
Direct Integration of AutoForm Software in CATIA V5
AutoForm-NX
AutoForm plus r4 p-NX
Direct Integration of AutoForm Software in NX
EasyBlank Inventor
EasyBlank Inventor
Analysis of Stamped Parts Embedded within Autodesk® Inventor® Software
EasyBlank
EasyBlank
MatForm
MatForm
AutoForm-Sigma®
Software for Sensitivity Analysis, Optimization and Robustness
The AutoForm-Sigma software module is specialized for analyzing and improving the robustness of sheet metal products and processes. It serves to improve and validate the forming process, and to reduce or eliminate part rejects.
With AutoForm-Sigma, products and processes can be designed so that the resulting manufacturing process is most efficient and stable while meeting desired quality targets. The influence and sensitivity of design parameters are easily analyzed which leads to improved process know-how and shorter development times. In addition, statistical process control techniques can already be applied in the design phase, taking into account the noise and variability that are inherent in the forming process. Therefore, sheet metal formers can address and solve key manufacturing problems much before going into production, with obvious advantages.
AutoForm-Sigma provides the following benefits:
Shorter development and tryout times -
because the forming process becomes more transparent and process know-how is improved
More stable manufacturing processes during the entire production cycle -
through identification of the process window
Less plant downtime, fewer tool adjustments and fewer part defects -
because of more robust manufacturing processes
More robust manufacturing processes -
through quality and process capability analyses
AutoForm-Sigma is fully integrated into the AutoForm work environment. Unique on the market, it automatically analyzes and displays the results (e.g. influence, sensitivity, process capability Cpk) directly on the parts – no time consuming investigations of abstract numbers and diagrams are needed any more. No other software offers this new methodology which can be used by die face designers and engineers, without requiring years of specialized expertise.
AutoForm-Sigma’s main features include:
Easy definition of design parameters
Automatic start of multiple simulations
Statistical techniques pre-defined and ready for user application
Identification of dominant design parameters
Determination of influence and sensitivity of design parameters
Automated process optimization
Determination of noise and variability of process parameters
Integration of Statistical Process Control (SPC) and simulation
Identification of process window
2012-09-11
Moldex3D-R11-download
Moldex3D is a suite of professional CAE tools that enable more accurate and more efficient plastic part verification and mold optimization. It helps global designers create better products to meet market demands. It also helps manufacturers produce high-quality plastic parts at lower cost. Moldex3D leads users to overcome severe industrial challenges and strengthen core competitiveness.
Moldex3D R11.0 brings several breakthroughs on solver enhancement and user friendliness. It now provides the most complete industrial processing simulations, including advanced hot runner optimization, co-injection molding, microcellular molding, underfill encapsulation, etc. It also continues improving pre-processing and post-processing functionalities that help users acquire optimal solutions more easily and more efficiently.
Moldex3D R11.0 builds its outstanding capabilities on past releases and adds innovation for better performance and user experience, offering the following new features and benefits:
Advanced Support for Pre-Processor
Accuracy Improvements for Simulations
Enhanced Efficiency for Simulations
New Simulation Capabilities
Material Database Updates
High Performance Computing
Advanced Support for Pre-Processor
Moldex3D R11.0 has improved its exclusive pre-processors, Moldex3D Mesh and Designer, to help users avoid most difficulties in the pre-processing preparation.
Quality Improvements in Moldex3D Mesh
Moldex3D Mesh highly improves the quality of solid mesh and surface mesh. Aimed to circular features, the meshing processor will assign at least six node seeds automatically in a circular region, which means a better node density distribution to describe a circular feature. It will avoid common geometric distortion in circular surface mesh and bring more accurate simulations.
A specific geometric feature can be perfectly portrayed
An enhanced function has also been added for users to find a region with small edge length on one mesh edge. Users can setup ideal minimum edge length to identify disqualified surface elements for further improvements. It will help users enhance mesh quality.
Features and Enhancements in Designer
Moldex3D Designer develops several new features:
Enables users to directly modify local geometric thickness on a 3D model. It is more efficient for users to run simulations for thickness changes.
Provides a user-friendly tool to draw an arc curve and attribute it as a runner or a cooling channel. It allows users to design feeding or cooling systems depending on individual needs.
Supports to import 3D models of cooling channels in STL format directly from CAD software. Users can build up complex cooling systems more easily.
Users can create a complex cooling system in STL
Enhances the meshing performance especially for models with large runner volume. Its function of auto grid distribution will automatically distribute more elements in cavities than that in runner. It will lead to an increase on mesh and result resolutions in critical regions.
Supports to specify symmetric settings of models
JMAG-Designer-v11.1-download
JMAG-Designer is a simulation software for electromechanical design striving to be easy to use while providing versatility to support users from conceptual design to comprehensive analyses
Electrical Machine Design
(IPM, SPM, SR, Spindle, Induction, Stepper Motor, Alternator...)
Basic Characterstics Analysis
(N-T Analysis, Torque Ripple Analysis)
Inductance Calculation,
Efficiency Analysis
Magnetization, Demagnetization, Eccentricity Analysis
Loss Analysis
(Iron Loss, Eddy Current Analysis)
Thermal Analysis
Structural Analysis
(Stress, Centrifugal Force, Sound Pressure Analysis)
Transformer / Reactor Design
Basic Characteristics Analysis
Structural Analysis
(Sound Pressure)
Loss Analysis
Thermal Analysis
Busbar Design
Current Distribution
Inductance Claculation
Thermal Analysis
Structural Analysis
Induction Heating Analysis
(Printer Roller, Inductance Frunace, Gear,
Cooking Heater, Drive Shaft, Crankshaft...)
Eddy Current Density
Distribution
Joule Loss Density Distribution
Temperature Distribution
and Variation
Vero_ViSi_ 20.0_cracked
VISI v20 q2 is acknowledged as one of the world's leading PC based CAD / CAM solutions for the Mould & Die industries. It offers a unique combination of applications, fully integrated wireframe, surface and solid modelling, comprehensive 2D, 3D and 5 axis machining strategies with dedicated high speed routines. Industry specific applications for plastic injection tool design including material flow analysis and progressive die design with step-by-step unfolding provide the toolmaker with unsurpassed levels of productivity.
Vero Software offers dedicated solutions that eliminate the links between varying software suppliers and the solid-to-surface or CAD / CAM geometry conversions required by traditional systems.
VISI Modelling
Advanced CADCAM Software Solutions For The Manufacturing Industry
VISI Modelling is the foundation of all VISI products and provides a robust and powerful solid and surface modelling system based around the industry standard Parasolid® kernel. Combined with Vero’s surface technology, model analysis and 2D design, VISI Modelling offers complete flexibility to construct, edit or repair the most complex 3D data.
Features at a glance:
Easy to learn intuitive interface
Extensive CAD interfaces
Industry standard Parasolid® kernel
Combined wireframe, solid & surface modelling
Solid & surface boolean operations
Surface repair & analysis
Edge tolerance manipulation
Powerful blending
Intelligent model deformation
Fast rendering & texture mapping
Mechanical curve construction
Associative tool detailing
Automatic B.O.M. creation
Extensive range of CAD interfaces. VISI can work directly with Parasolid, IGES, CATIA v4 & v5, Pro-E, UG, STEP, Solid Works, Solid Edge, ACIS, DXF, DWG, STL and VDA files. The extensive range of translators ensures that users can work with data from almost any supplier. The ability to skip corrupt records during the import process provides a platform from where the most inconsistent data can be managed. Very large files can be handled with ease and companies working with complex designs will benefit from the ease with which their customer’s CAD data can be manipulated.
True hybrid modelling. VISI provides a dynamic structure from where it is possible to work with either solid, surface, wireframe or a combination of all three without any restrictions. Solid modelling has become a fundamental cornerstone of design but is often limited to prismatic or basic geometry. Solid modelling commands include boolean technology such as unite, subtract, extrude, revolve, sweep, cavity, intersect and hollow. Surfacing technology however provides a different set to tools and techniques for more organic, free-form geometry creation. Surface modelling functions include ruled, lofted, drive, sweep, n-sided patch, drape, tangent, draft, revolved and piped surfaces. These modelling commands combined with advanced surface editing make it easy to heal imported geometry or construct the most complex 3D data.
Surface repair and editing. Small gaps between surfaces on imported models can be automatically healed preventing the time consuming process of rebuilding very small surface patches. Where surfaces are corrupt or missing VISI will automatically create the edge curve geometry making it easy to rebuild new faces using the comprehensive surfacing suite. To ensure the new surfaces are within tolerance, the new and the old surfaces can be compared to check for min/max distance and curvature deviation. Closing a surface model to produce a solid body eliminates construction problems later in the design process and immediately brings the benefits of solid modelling to the user. The ability to seamlessly switch between solid and surface technology provides unlimited freedom, ensuring the user can work with difficult CAD data.
2012-08-23
ShipConstructor-2012-download
ShipConstructor is an AutoCAD based shipbuilding CAD/CAM software suite that provides detail design and modeling tools for production engineering of marine structures. ShipConstructor captures all information relevant to the 3D design, manufacturing, maintenance, repair and refit of complex marine projects inside of a Marine Information Model (MIM). At the heart of the model is a single relational database residing on a Microsoft SQL Server that can be integrated with related business processes and applications. ShipConstructor’s unique software architecture and AutoCAD foundation provide significant competitive advantages.
ShipConstructor 2012 R2 reduces the time needed to clearly and cleanly label drawings through various improvements in labeling. The convenience and speed of manual labeling has been increased by providing manually activated options for automatic redistribution of label bubbles along label leader distribution lines using Center, Nearest, or Equidistant placement while automatically preventing leader lines from crossing. Meanwhile, rework is prevented since ShipConstructor 2012 R2 now preserves user-chosen setups of labels and leader distribution lines without being overridden.
New commands further improve clarity by allowing the consolidation of close or similar angled leader distribution lines. This function is particularly useful in production drawings where parts are labeled from multiple BOM tables.
The Subscription Advantage Pack for ShipConstrurctor 2012 R2 (scheduled for launch in April 2012) will also include the ability to automatically label to the edge of a part rather than the piecemark. This highly requested feature allows more efficient generation of production drawings to comply with common industry requirements
ShipConstructor 2012 R2 introduces the ability to model Electrical Cable Supports within Space Allocations. This enhancement will also support the Electrical Module Cable Routing feature when it is released. Cable Supports provide an equipment style of modeling inverted tee, trapeze, tray, tray supports, and other types of cable supports. Any type of stock may be defined to have multiple standard drawings per stock in order to represent different configurations and interval spacing of the same stock in order to simplify management. Flexible tools to easily allow the renaming of cable supports have been introduced as well.
Two new drawing types are available to host the Cable Supports objects:
Wireway model drawing - a unit bound drawing for modeling space allocations and cable supports
Wireway arrangement drawing - a general electrical production drawing
CST-Studio-Suite-V2012-sp4crack
The electromagnetic simulation software CST STUDIO SUITE® is the culmination of many years of research and development into the most accurate and efficient computational solutions for electromagnetic designs. It comprises CST’s tools for the design and optimization of devices operating in a wide range of frequencies - static to optical. Analyses may include thermal and mechanical effects, as well as circuit simulation.
CST STUDIO SUITE benefits from an integrated design environment which gives access to the entire range of solver technology. System assembly and modeling facilitates multi-physics and co-simulation as well as the management of entire electromagnetic systems.
CST STUDIO SUITE can offer considerable product to market advantages such as shorter development cycles, virtual prototyping before physical trials, and optimization instead of experimentation.
CST STUDIO SUITE comprises the following modules:
CST MICROWAVE STUDIO® (CST MWS) is the leading edge tool for the fast and accurate 3D simulation of high frequency devices and market leader in Time Domain simulation. It enables the fast and accurate analysis of antennas, filters, couplers, planar and multi-layer structures and SI and EMC effects etc.
CST EM STUDIO® (CST EMS) is an easy-to-use tool for the design and analysis of static and low frequency EM applications such as motors, sensors, actuators, transformers, and shielding enclosures.
CST PARTICLE STUDIO® (CST PS) has been developed for the fully consistent simulation of free moving charged particles. Applications include electron guns, cathode ray tubes, magnetrons, and wake fields.
CST CABLE STUDIO™ (CST CS) for the simulation of signal integrity and EMC/EMI analysis of cable harnesses.
CST PCB STUDIO™ (CST PCBS) for the simulation of signal integrity and EMC/EMI EMI on printed circuit boards.
CST MPHYSICS STUDIO™ (CST MPS) for thermal and mechanical stress analysis.
CST DESIGN STUDIO™ (CST DS) is a versatile tool that facilitates 3D EM/circuit co-simulation and synthesis.
To learn more about the licensing options of CST STUDIO SUITE 2012, please refer to our Terms & Conditions.
CST MICROWAVE STUDIO® (CST MWS) is a specialist tool for the 3D EM simulation of high frequency components. The unparalleled performance of CST MWS makes it the first choice in technology leading R&D departments.
CST MWS enables the fast and accurate analysis of high frequency (HF) devices such as antennas, filters, couplers, planar and multi-layer structures and SI and EMC effects. Exceptionally user friendly, CST MWS quickly gives you an insight into the EM behavior of your high frequency designs.
CST promotes Complete Technology for 3D EM. Users of our software are given great flexibility in tackling a wide application range through the variety of available solver technologies. Beside the flagship module, the broadly applicable Time Domain solver and the Frequency Domain solver, CST MWS offers further solver modules for specific applications. Filters for the import of specific CAD files and the extraction of SPICE parameters enhance design possibilities and save time. In addition, CST MWS is embedded in various industry standard workflows through the CST design environment.
2012-08-17
MasterCam-X6-MU2-crack
Mastercam X6 Release Highlights
Mastercam X6 delivers full 64-bit support and a powerful set of new tools to help you make the most of your shop. We've listed some highlights below (click the video icon to see a quick demonstration):
Mill and Router:
The new in-process stock model delivers an accurate representation of your part as toolpaths are applied to it. The model can be verified and used as the basis for additional toolpaths. video
Enhanced dynamic milling includes finer control and additional time savings. video
Fast 2D HST region chaining dramatically speeds up dynamic toolpath programming. video
Smart rest roughing uses the new in-process stock model to create a highly efficient pass to remove stock remaining from a larger tool
Hybrid finish "filler" passes divide your part into a series of Z sections and applies two different machining strategies to each section for a superior finish.
Lathe:
Variable depth roughing for longer insert life. video
Easy pick, pull and cutoff operations. video
Remaining stock removal. video
Smart finishing that identifies and cuts flats and walls with different motion. video
Finish tool inspection. video
Enhanced canned rough and finish toolpaths.
New finish feed / speed facing and canned grooving controls.
Wire:
Enhanced autosyncing.
Improved wirepath editing.
New force wire taper to vertical options.
CAD Tools:
Finer control over intersecting and trimming solid edges.
Enhanced solid trim to surface.
Dynamic transform along a vector.
Blade Expert: video
With the release of Mastercam X6 , we're also introducing Mastercam Blade Expert, a new purchasable add-on designed for multi-bladed parts. This powerful tool can be added to Mastercam Mill Level 3 or Router Pro, and delivers:
Powerful programming for fans, propellers, impellers, turbines, marine screws and more.
Variety of efficient roughing strategies.
Precise curt pattern control on blade, fillet, and floor finishing.
Automatic tool axis control.
Full machine simulation.
These enhancements and updates have been tested and released by the Quality Control Department and will function inside Mastercam X6. Follow the instructions given in the 'info' button of each download for install instructions.
Read Before Installing Mastercam X6
X6 has both a 32bit and a 64bit version so please read the notes below:
The X6 32bit version can only be installed on a 32bit OS and the X6 64bit version can only be installed on a 64bit OS.
X6 64-bit version will NOT allow saving to a previous X version.
X6 32-bit can save files to previous version just as past versions allowed (geometry only).
Files created in previous Mastercam versions can be read into both X6 32 and X6 64 bit versions.
The X6 64-bit version is installed into the C:\Program Files. X5 was installed into the C:\Program Files (x86) folder on 64bit OS systems because it was a 32bit application.
There is only one set of sample files and power libraries and they will work with both x64 and x86.
Art is only available for 32-bit operating systems. The 64-bit version is currently in development.
CAM-TOOL-V7.1
Sophisticated NC programmers appreciate the importance of a complete, integrated CAD/CAM environment to handle the toughest manufacturing jobs. Regardless of the application, these ELITE users often find the need to modify, edit & create additional geometry to support the creation of toolpath.
compatible with Windows XP, XP64, VISTA, and Windows 7 X64 Professional, CAM-TOOL provides Mold & Die manufactures a wide range of modeling capabilities not found in "high end" programming systems. Once your data's prepared, the calculation of NC toolpath is completed by simply defining your machining strategy & cutting tools. CAM-TOOL does the rest by always making sure the tool only goes where necessary to remove material using our powerful optimization capabilities.
Graphic Products Inc. has a proven track record in data conversion. With over 20 years of technical expertise in the software industry, CAM-TOOL’s data translators provide robust, accurate and reliable data conversion. Conversion capabilities include translators able to handle most data types including but not limited to: Input and Output formats for IGES (JAMA-IS compatible), DXF, CAM-TOOL.C3. Optional direct translator support is provided for CATIA and UNIGRAPHICS. Standard output from CAM-TOOL Base Module is RPS (STL and RPF are optional).
[Main Functions]
Input/ Output formats in CAM-TOOL:
IGES (JAMA-IS compatible)
DXF
CAM-TOOL.C3
Direct Translator support for: CATIA* UNIGRAPHICS* (Parasolids)
Output Formats from CAM-TOOL: RPS (Standard) STL* RPF*
*Optional Items: RPS is Standard in the Base Module.
SHAPE DIAGNOSIS
- Geometry Evaluation -
Geometry Evaluation and editing functions are integrated into the modeling function for use in die/mold design. This powerful tool is used to create die/mold surfaces from product models and also provides valuable information about the model such as Radius and Draft Angle.
In the past, the process of developing mold models from product models was a time consuming process. When developing CAM-TOOL, attention was focused on this previously inefficient area in order to develop a more practical geometry evaluation function. A variety of advanced capabilities were created including such functions as cavity/core split, undercut, draft angle and volume surface area calculation. These functions relieve the designer/operator from tedious, demanding and intricate work.
Display of Fillet Radius Data of Specified Surfaces
Fillet Radius extraction using specified surfaces and single-operation processing. Accurate shape control by cross-section line extraction.
Display of Draft Angle Data at Specified Surfaces
Extraction of surfaces on vertical walls in one operation. Surfaces for which the tilt is smaller than the specified draft angle, can be extracted in one operation. Since the system selects the necessary surfaces directly, the designer/operator can switch to editing operations immediately.
[Main Functions]
Automatic extraction of non-frontal surfaces.
Cavity/core split.
Undercut - Yes / No
Draft Angle data.
Volume and surface area calculation.
Maximum co-ordinate (boundary) values for surfaces.
Extraction of surfaces on vertical walls.
Extraction of cross-section.
MODELING
- Die/mold Surface Design - CAM-TOOL‘s modeling functions are designed specifically for the demands of die/mold surface design. The array of fillet and surfacing functions are easy to use and master. Consequently, the sophisticated modeling required for the direct cutting of cavities can be accomplished more efficiently.
Worknc-G3-V21
WorkNC is best of breed, complementary CAM software that enhances all design and manufacturing systems by providing the most reliable, efficient, easy-to-program cutter paths, resulting in unmatched productivity and safety.
The automatic features of WorkNC allow novice CAM operators to automatically set up toolpaths in just a few minutes. Experienced users of other CAM software quickly appreciate the profitable and unique benefits WorkNC provides. Used either directly on the shop floor or in your CAD room, the reliability and quality of WorkNC's CNC programming are unsurpassed!
Automatic CAD CAM for 2 to 5 axis
TRANSFORM YOUR SHOP’S EFFICIENCY WITH V21!
WorkNC V21 is the latest release of WorkNC and the first release to support task threading and parallel processes on multi-core processors. What does this mean for WorkNC users?.....
* Task Threading: certain cutterpaths will now run multiple threads. That means individual portions of the cutterpath will be calculated at the same time. Computers with multi-core processors will run those threads individually, on separate cores, decreasing calculation times. It is not just cutterpaths that can be multi threaded, but other calculations as well. For example, Auto 5 will be able to take advantage of this technology for faster calculations.
* Parallel Processes: multiple cutterpaths in the workzone can be run simultaneously, as long as one is not dependant on another. For example, a Planar Finishing can run at the same time as a Z-Level Finish, since one is not dependant on the other. However, a Global ReRough may need to wait on a stock model update before calculations start. Parallel processing will allow you to calculate more cutterpaths faster than ever before, taking advantage of your multi-core processors.
Video tutorial - WorkNC parallel calculation window
In addition to multi-core support, WorkNC V21 includes other new features such as:
* Support for 64 Bit Windows
* Continuous Finishing - a complete new finishing algorithm.
* Enhancements to Auto 5 (module that automatically converts 3 axis into 5-axis simultaneous toolpaths).
* Various enhancements to 3-axis cutterpaths.
* Fast Machine and holder collision checking.
* Calculation of maximum collision free regions on tool holders
* New, highly automated, view creation options
* Numerous, intelligent enhancements to the GUI
DNV-Sesam-2011-tutorials
Sesam GeniE
is a tool for designing and analyzing offshore and maritime structures made of beams and plates. Modelling, analysis and results processing are performed in the same graphical user interface. The use of concept technology makes Sesam GeniE highly efficient for integrating stability, loading, strength assessment and CAD exchange. All data are persistent enabling the engineers to do efficient iterative re-design of a structure.
Sesam GeniE for fixed structures
The analysis – hydrodynamic as well as strength calculations – and evaluation of results are done within GeniE. GeniE is built for frequent changes in both structural and equipment layout – any modification performed on a concept level will give an automatic updated and consistent analysis model.
For fixed platforms, GeniE can perform static and dynamic linear analysis for structures subjected to wave, wind, current and the equipment layout. It is also possible to include the effects from non-linear pile/soil behaviour. Code compliance of beams may be performed according to API/AISC, API/LRFD, Norsok/Eurocode or ISO (19902). The results may be reported graphically or by using standard report layouts that can be customized (supporting MS Office). Similarly, for plated structures (stiffened as well as un-stiffened) they may be checked against codes like DNV (RP C201.1) and API(2U).
Sesam HydroD
is a tool for hydrostatic and hydrodynamic analysis. By integrating these tasks significant cost savings may be achieved in the engineering phase since the same panel model may be used by one tool.
Sesam HydroD will perform compliance checks against statutory rules for stability including the importance of integrity of the deck tanks. Floating positions may be determined as a result of actual mass and buoyancy or from an automatic compartment filling to satisfy specified position.
Hydrodynamic analysis
The hydrodynamic analysis may be performed using the actual floating position – and independent of the panel model – to determine worst loading conditions to be used in structural strength analysis. These analyses are normally performed in the frequency domain, but it is also possible to do it in time domain (Linear as well as non-linear).
The loads (pressure and accelerations) are automatically used by the structural analysis. The response and loads may be graphically assessed in animations.
Sesam DeepC
is a tool for mooring and riser design as well marine operations of offshore floating structures. It will perform mooring analysis separately or when including the coupled effects from risers and vessels. Furthermore, Sesam DeepC may be used for riser design where the risers are analyzed separately or when considering coupling effects. Marine operations may be simulated in the time domain for a study of motions and station keeping of multibody systems.
For deep water installations, the riser and mooring systems greatly influence the motions of the floater. The floater and slender structures constitute an integrated dynamic system responding to the environmental loading. Because coupling effects are consistently treated, there is no need for the engineers to make assumptions about the damping level (updated for each time step) which is crucial in a non-linear analysis accounting for slender structure restoring, damping and inertia forces. In other words, Sesam DeepC will increase the confidence level of riser and mooring analysis.
SDS/2-v7.3-Design-Data-download
SDS/2 Engineering combines connection design with 3D frame analysis and member design, all neatly packaged for use as an accurate BIM model. No other engineering product can offer the model accuracy and time savings of SDS/2 v7.3 Engineering.
Unlike other frame analysis products, SDS/2 Engineering creates a model that is accurate to manufacturing standards, with correct top-of-steel elevations and work point locations — enabling connections to be automatically designed while considering both fit-up and constructability. Another feature unique to SDS/2 Engineering is the ability to calculate transfer forces while designing the structure — translating to safer connections and safer structures.
Continuous changes are a staple of almost every project. SDS/2 Engineering handles these changes quickly, completely and with ease. In any change, such as layouts, member sizes, or loads, SDS/2 Engineering will reanalyze the frame, resize members, and redesign connections automatically.
As the number of engineering firms that include shop drawings as a part of their deliverables grow, SDS/2 Engineering will become increasingly valuable as an engineering tool. It shares the same 3D database with all other SDS/2 software solutions, providing a seamless bi-directional transfer of information. Engineers can use SDS/2 Engineering to analyze a model created by any SDS/2 software, or detailers can use SDS/2 v7.3 Detailing to create shop drawings directly from the model created with SDS/2 Engineering. Either way, time and expense are saved and the probability of errors is significantly reduced. At any time, users can export their model to — or import a model from — their collaborative BIM product of choice.
Together, SDS/2 software solutions connect contractors, engineers, detailers, fabricators and erectors in a collaborative work process.
2012-08-14
Neotec_PIPEFLO_9.0.2_CRACK
PIPEFLO V9 is a steady state simulator for flow assurance issues.
PIPEFLO’s features for sensitivity studies make it fast and easy for users to consider a wide variety of options in order to arrive at the best solutions for their design issues and operational problems.
Flow Assurance
Pipeline Design
Automatic Facility Locator
Advanced Sensitivity Studies
Export to OLGA
Hydrates
Corrosion
Pipeline Optimisation
Pipeline Cool Down Calculation
Pipeline Looping
Solution include
Designing a water distribution network for an enhanced oil recovery project
Sizing pipelines in a two-phase heavy oil system
Predicting and locating corrosion potential in a sour gas pipeline
Designing the facility requirements to maintain acid gas in the liquid phase in a disposal operation
Locating compressor stations in a gas transmission line
Analysing gathering systems that include fibreglass or PVC line
Designing heat tracing for a liquid sulfur line
Expanding steady-state slugging studies to include transient modelling via a link with OLGA® for flow assurance in offshore pipeline systems
PIPEFLO Dynamic is the solution that brings dynamic simulation into the existing steady-state workflow and allows users to model select dynamic operations in conjunction with their standard steady-state modelling.
Accessible through PIPEFLO’s proven interface, PIPEFLO Dynamic is powered by OLGA® to allow the seamless application of consistent steady-state and dynamic flow modelling. A limited set of data entry is required in addition to what is already required for a typical steady-state flow model. The level of integration promotes significant time and cost savings and powerful workflow efficiencies.
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