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FE-Simulation of Hot Forging with an Integrated Heat Treatment with the Objective of Residual Stress Prediction

机译:具有综合热处理热锻造的Fe模拟,其目标是残余应力预测

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Hot forming as a coupled thermo-mechanical process comprises numerous material phenomena with a corresponding impact on the material behavior during and after the forming process as well as on the final component performance. In this context, a realistic FE-simulation requires reliable mathematical models as well as detailed thermo-mechanical material data. This paper presents experimental and numerical results focused on the FE-based simulation of a hot forging process with a subsequent heat treatment step aiming at the prediction of the final mechanical properties and residual stress state in the forged component made of low alloy CrMo-steel DIN 42CrMo4. For this purpose, hot forging experiments of connecting rod geometry with a corresponding metallographic analysis and x-ray residual stress measurements have been carried out. For the coupled thermo-mechanical-metallurgical FE-simulations, a special user-defined material model based on the additive strain decomposition method and implemented in Simufact Forming via MSC.Marc solver features has been used.
机译:作为偶联的热机械加工的热成形包括许多材料现象,其在成型过程中和之后的材料行为以及最终组分性能下对材料行为产生相应的影响。在这种情况下,现实的FE模拟需要可靠的数学模型以及详细的热机械材料数据。本文介绍了专注于热锻造工艺的Fe基模拟的实验性和数值结果,其具有随后的热处理步骤,其旨在预测由低合金CRMO-钢DIN制成的锻造部件中的最终机械性能和残余应力状态42crmo4。为此目的,已经进行了具有相应金相分析和X射线残余应力测量的连接杆几何形状的热锻造实验。对于耦合的热机械冶金Fe-Simulations,已经使用了一种基于添加剂应变分解方法的特殊用户定义的材料模型,并通过MSC.CARC求解器特征在Simufact中实现。

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