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Siemens PLM solutions: Siemens traditional CAE tools include FEMAP user interface and NX Nastran solver. It is further possible to perform the simulation and store the data on public or private cloud.
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By merging SIMULIA with BIOVIA we are also talking about multi scale simulation from system to molecular level. The solution is now in a mature stage with incorporation of process optimization, light weight optimization, durability and advanced CFD tools. Next Dassault Systemes introduced SIMULIA on 3D Experience platform allowing analysts to utilize data management, process management and collaboration tools with Abaqus in the form of simulation apps and roles.This approach brings designers and analysts with CATIA experience under one roof.
![loopcad 2016 review loopcad 2016 review](https://www.cadalyst.com/files/cadalyst/nodes/2015/26433/ACADProg10-15-Fig4.jpg)
Introduce Knowledge ware, and user has all the nice features to perform DOE’s and parametric studies. This workbench includes additional toolbars to define Abaqus model and generate Abaqus input file from within CATIA. Next initiative was SIMULIA V5 in which Abaqus was introduced in CATIA V5 as a separate workbench.It’s a nice way to reduce re-work but design and simulation teams are still separate in this workflow. All the CAE parameters in Abaqus CAE are mapped from old design to updated design.
![loopcad 2016 review loopcad 2016 review](http://fabacademy.org/archives/2014/students/fernandez.juan/src/week2/openscad.jpg)
With this plug-in it is possible to automatically transfer the updated data from above mentioned CAD platforms to Abaqus CAE with a single click.
LOOPCAD 2016 REVIEW SERIES
The first one in series was Associative interfaces for CATIA, Pro-E and Solidworks which is a plug-in to Abaqus CAE.They have been introducing new tools to meet this objective. Let’s discuss in context of Dassault Systemes and Siemens.ĭassault Systemes: After acquiring Abaqus Inc in 2005, Dassault Systemes rebranded it as SIMULIA with the objective of giving users access to simulation capabilities without requiring the steep learning curve of disparate, traditional simulation tools. The extent to which the GAP can be bridged depends on the chosen workflow but to some extent, almost every CAE company has taken an initiative to introduce products that bridge this GAP. This is an effort to bridge the gap between design and analysis departments that has been embraced by the industry so far.
LOOPCAD 2016 REVIEW MANUAL
It means that all the pre-processing steps are mapped from old design to new design without any manual intervention. In this workflow, if the initial design does not meet the design requirements, it is updated and sent to the solver, not to the pre-processor. If a change is mandatory, FEA is performed manually all over again. Designers send the CAD data to analysts who perform FEA in specialized tools and submit the product virtual performance report back to designers. This has been the traditional workflow in organizations that have completely disconnected design and analysis departments. Any changes in design requires all the rework. The above workflow is not closed so there is no scope of model update. A good CAE workflow is regarded as one that offers closed loop CAD to CAD data transfer. The post-processor is a visualization tool to make certain conclusion from requested output: either text or binary. In our automobile analogy, pre-processor can be regarded as the ignition key without which it is not possible to utilize the engine (solver) efficiently. The pre-processor is a graphical user interface that allows user to define all the inputs into the model such as geometry, material, loads and boundary scenarios etc. It can be regarded as the main power source of a CAE system. If you compare it with an automobile, solver is the engine that has all the steps/solution sequences to solve the discretized model. Any complete FEA solution has at-least three mandatory components: Pre-Processor, solver and post-processor.