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Performance improvement of tailored die quenching using material combinations with phase change material in hot stamping

机译:使用相变材料在热冲压中使用材料组合进行定制模具淬火的性能改进

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摘要

The objective of this study is to investigate the performance improvement of tailored die quenching using material combinations with phase change material over the conventional tailored methods in hot stamping. The thermal characteristics of the phase change material, channel, die, block, and blank are analyzed using thermo-fluid transient simulations with the enthalpy method. Four cases of the material combinations with and without the phase change material are adopted as the die and block. A phase change material of lithium nitrate is applied to the soft zone. All cases without the phase change material do not satisfy the soft zone criteria, while all cases with the phase change material satisfy both the soft zone and hard zone criteria, owing to the effects of the heat storage and release in the phase change material. In addition, the martensite finish temperature area ratio increases with increasing the contact pressure, while the martensite start temperature area ratio decreases. The optimum contact pressure is determined to be 15 MPa for H13 and GTCS® with the phase change material to maximize both the strength and ductile area. Overall, the tailored die quenching process using H13 and GTCS® with the phase change material exhibits the best performance for high-quality tailored blanks.
机译:本研究的目的是探讨使用相变材料的材料组合在热冲压中使用相变材料的材料组合进行定制模具淬火的性能改善。使用具有焓法的热流体瞬态模拟来分析相变材料,通道,模具,块和坯料的热特性。用块和块采用具有和不具有相变材料的材料组合的四种情况。将硝酸锂的相变材料施加到软区上。所有没有相变材料的情况都不满足软区标准,而相变材料的所有情况都满足软区和硬区标准,由于热存储和释放在相变材料中的影响。此外,马氏体净温面积比随着越来越多的接触压力而增加,而马氏体开始温度面积比降低。最佳接触压力为H13和GTCS®的15MPa,具有相变材料,以最大化强度和延展区域。总的来说,使用H13和GTCS®具有相变材料的定制模具淬火过程表现出用于高质量的量身坯料的最佳性能。

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