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Structural topology optimization of a stamping die made from high-strength steel sheet metal based on load mapping

机译:基于负荷映射的高强度钢板金属制造的结构拓扑优化

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Even though high-strength steel is a favourable material because of its high strength and good formability, this material poses new challenges on the structure of stamping dies owing to potential damages of the die during production. Stamping dies are conventionally produced according to design manuals and standard manufacturing guidelines, where a high safety factor is specified to ensure that the stamping die is heavy and thick. A structural topology optimization method for a stamping die is presented in this study based on finite element simulations of the sheet metal stamping process. The finite element model of the stamping die is first established. Next, the boundary forces acting on the sheet metal are obtained from simulations and these forces are applied to the punch surface by means of load mapping during topology optimization. These forces are equivalent to the interaction between the blank and die. The objective function is to maximize the static stiffness under multi-conditions, which is defined by using the compromise programming approach. The analytic hierarchy process method is used to determine the weight ratio of the body stiffness in various load conditions and conduct topology optimization of the comprehensive objective function. The results show that the weight of the optimal punch is reduced while its performance is improved. More importantly, the reconstructed punch can be manufactured practically.
机译:尽管高强度钢是一种良好的材料,因为它具有高强度和良好的成形性,但这种材料由于在生产过程中模具的潜在损坏而导致冲压模具的结构构成了新的挑战。印章模具通常根据设计手册和标准制造指南生产,其中指定了高安全系数,以确保冲压模具浓厚厚。本研究基于金属板压制工艺的有限元模拟,提出了对冲压模具的结构拓扑优化方法。首先建立冲压模的有限元模型。接下来,从模拟获得作用在金属板上的边界部,并且通过拓扑优化期间通过负载映射施加到冲头表面上的这些力。这些力相当于空白和模具之间的相互作用。目标函数是通过使用折衷程序方法来最大化多条件下的静态刚度。分析层次处理方法用于确定各种负荷条件中的体刚度的重量比,并对综合客观函数进行拓扑优化。结果表明,当其性能提高时,减小了最佳冲头的重量。更重要的是,可以实际地制造重建的冲头。

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