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Numerical simulations in optimization of product and forming process

机译:优化产品和成型工艺的数值模拟

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Modern systems for the development and manufacturing of new products are strongly connected to market demand. To achieve fast and effective response to market needs, the concept and design phase must take place in a virtual CA-x environment. Once the approximate product geometry is known, a numerical simulation has to be performed to study the forming process and appropriate tool design. After some iterations, product geometry, with some variants, is known and the best of them is chosen for further development. The number of stamping steps and the exact tooling geometry are determined. The stamping processes which are widely used in the manufacturing of sheet metal parts are hard to control, since they depend on numerous parameters relating to geometry and material type. The purpose of this paper is to present the industrial application of 3D numerical simulations using the PAM-STAMP program in the product and process development cycle. The simulations were performed during product and process development including tool design and manufacturing. The issues theoretically discussed in the first part of the paper will be explained by example. The time, costs and benefits analysis of using the numerical simulation in the product and process development cycle will also be discussed.
机译:用于开发和制造新产品的现代系统与市场需求紧密相关。为了快速有效地响应市场需求,概念和设计阶段必须在虚拟CA-x环境中进行。一旦知道了近似的产品几何形状,就必须进行数值模拟以研究成形过程和适当的工具设计。经过几次迭代之后,就知道了具有某些变体的产品几何形状,并选择了其中最好的一种以进行进一步开发。确定冲压步骤的数量和确切的模具几何形状。钣金零件制造中广泛使用的冲压工艺很难控制,因为它们取决于与几何形状和材料类型有关的众多参数。本文的目的是介绍在产品和过程开发周期中使用PAM-STAMP程序进行3D数值模拟的工业应用。在产品和过程开发(包括工具设计和制造)过程中执行了仿真。本文第一部分理论上讨论的问题将通过示例进行解释。还将讨论在产品和过程开发周期中使用数值模拟的时间,成本和收益分析。

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