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PAM_STAMP_2G_2009(C)ESI

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PAM_STAMP_2G_2007
PAM_STAMP_2G_2008

Size:

3 59M

Language: multilanguage
Protection: Flexlm
Date: 2010.01.22
Software Type: CAE
Platform:

 
Windows

Release Type: license
Introduce  
URL:
    www.esi-group.com

PAM-STAMP 2G is a complete, integrated, scalable and streamlined stamping solution. It covers the entire tooling process from quotation and die design through formability and try-out validation, including springback prediction and correction. It provides solutions-oriented tools for Automotive, Aerospace, and General stamping processes

PAM-STAMP 2G online!
PAM-STAMP 2G allows users to make decisions online, bringing together the design engineer, the material provider, the die designer and the try-out press shop from an early stage of the design right through to production. This web-enabled technology allows images, annotation, text and 3D, models to be shared, thus supporting a truly collaborative engineering environment.
PAM-INVERSE: Blank shape prediction
Designed to make a very rapid assessment of a part shape, and to provide a quick estimate of the material selection for product costing, the PAM-INVERSE solution is the entry point into the world of Stamping simulation.
PAM-DIEMAKER: Rapid Die Design
With its robust and fast parametric surfaces engine, PAM-DIEMAKER allows metal forming engineers to focus on rapid draw die design and optimization. PAM-DIEMAKER also ensures optimal data transfer with the user's standard CAD geometry. Time saving is significant. And with PAM-QUIKSTAMP+, a number of different design options can be considered and evaluated quickly… thus resulting in better and smarter tool design.
PAM-QUIKSTAMP+: Fast Feasibility Assessment
PAM-QUIKSTAMP+ enables a rapid evaluation of the draw die design. It represents the optimal compromise between accuracy and computation time, and is designed to work optimally in an iterative loop with PAM-DIEMAKER, saving time and avoiding costly tooling errors.
PAM-AUTOSTAMP: Simulation for Production Validation
With its contemporary solver platform, PAM-AUTOSTAMP handles the final validation of the whole metal forming simulation process. It covers quality control, tolerances, trimming, springback prediction, and compensation. With PAM-AUTOSTAMP, you gain a high level of confidence in the final tool design prior to machining, avoid subsequent recuts, and speed the time to market.

PAM-AUTOSTAMP also provides simulation support for an exceptional range of forming processes, including: stretch forming, fluid forming, rubber pad forming, hot forming, warm forming, and superplastic forming.

The PAM-STAMP 2G suite is used extensively in the Automotive, Aerospace, and Electronics & White Goods industries, to predict the manufacturing of a huge range of components, from very small, high precision progressive die parts, right up to full multi-stage bodyside pressings, examining the effects not only of draw dies, but also of the following operations all the way up to hemming.

PAM-STAMP 2G is a very flexible solution, offering users access to advanced functionality if required, but removing the need for users to worry about the technicalities of Finite Elements or numerical methods.

PAM-STAMP 2G has reference users in many different sectors, and is used extensively in shop floor environments, from experienced stamping professionals, through to research and materials specialists who can program their own extensions to PAM-AUTOSTAMP.

Automotive

PAM-STAMP 2G has a very strong representation in the Automotive sector, used in the majority of the world’s Car makers, Automotive materials providers, and a great many component suppliers and toolmakers. The easy connection between PAM-STAMP and PAM-CRASH allows for a far better prediction of the crash performance of a vehicle design.

Aerospace

PAM-AUTOSTAMP has been used for many years by some leading Aerospace companies, to allow them to predict accurately the as-formed condition of components, enabling them to reduce lead times for tooling, and also taking the stamping data into other software, to have a better prediction of in-service performance, and life cycle prediction.

download link  

  http://www.caxsoft.net/               http://softworld.tux.nu  
   E- Mail : crkteam@gmail.com cc: cax_world@gmx.net        
  
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