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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Numerical product design: Springback prediction, compensation and optimization
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Numerical product design: Springback prediction, compensation and optimization

机译:数值产品设计:回弹预测,补偿和优化

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摘要

Numerical simulations are being deployed widely for product design. However, the accuracy of the numerical tools is not yet always sufficiently accurate and reliable. This article focuses on the current state and recent developments in different stages of product design: springback prediction, springback compensation and optimization by finite element (FE) analysis. To improve the springback prediction by FE analysis, guidelines regarding the mesh discretization are provided and a new through-thickness integration scheme for shell elements is launched. In the next stage of virtual product design the product is compensated for springback. Currently, deformations due to springback are manually compensated in the industry. Here, a procedure to automatically compensate the tool geometry, including the CAD description, is presented and it is successfully applied to an industrial automotive part. The last stage in virtual product design comprises optimization. This article presents an optimization scheme which is capable of designing optimal and robust metal forming processes efficiently.
机译:数值模拟已广泛用于产品设计。但是,数值工具的准确性仍未始终足够准确和可靠。本文重点介绍产品设计各个阶段的现状和最新发展:回弹预测,回弹补偿和通过有限元(FE)分析进行优化。为了通过有限元分析改善回弹预测,提供了有关网格离散化的准则,并启动了一种新的壳单元厚度贯穿集成方案。在虚拟产品设计的下一阶段,将补偿产品的回弹。当前,由于回弹引起的变形在工业上是手动补偿的。此处介绍了一种自动补偿刀具几何形状(包括CAD描述)的过程,该过程已成功地应用于工业汽车零件。虚拟产品设计的最后阶段包括优化。本文提出了一种优化方案,该方案能够有效地设计最佳且坚固的金属成型工艺。

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