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Optimum shape design of die and preform for improved hardness distribution in cold forged parts

机译:模具和预成型坯的最佳形状设计,可改善冷锻零件的硬度分布

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Hardness of a cold formed part increases due to plastic deformation induced during the forming process. Hardness affects forgability of the part as well as its mechanical performance in use. In this study, a method was proposed to optimize the shape of preform and die to minimize variation in hardness distribution. The method was applied to backward extrusion. A finite element model of the mechanical behavior of the material during processing was developed to predict the effective strain distribution in the part. The hardness distribution was determined using an analytical relation between effective strain and hardness. An optimization code based on the Nelder-Mead search algorithm was developed and integrated with the finite element model. The results showed the effectiveness of the proposed method.
机译:冷成型零件的硬度由于在成型过程中引起的塑性变形而增加。硬度会影响零件的可锻性及其使用中的机械性能。在这项研究中,提出了一种优化预成型坯和模具形状以最小化硬度分布变化的方法。该方法应用于后向挤出。建立了材料在加工过程中的机械行为的有限元模型,以预测零件中的有效应变分布。使用有效应变和硬度之间的分析关系来确定硬度分布。开发了基于Nelder-Mead搜索算法的优化代码,并将其与有限元模型集成。结果表明了该方法的有效性。

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