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Inverse evaluation of equivalent contact heat transfer coefficient in hot stamping of boron steel

机译:硼钢热冲压中等效接触传热系数的反演

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摘要

It is of significance to evaluate the equivalent contact heat transfer coefficient (ECHTC) at the sheet-die interface in hot stamping of boron steel (HSBS) for controlling the local cooling rate of the sheet and hence obtaining components with tailored microstructure and properties. Moreover, accurate evaluation of the ECHTC can provide a reliable thermal boundary condition for numerical simulation of the HSBS process. In the study, a simple and effective physical simulation setup for die quenching of boron steel (DQBS) was developed, where the temperatures at measurement points are related only to the ECHTC so as to improve the evaluation accuracy. A FE-based optimization model for inverse evaluating the ECHTC was established. The ECHTCs at the B1500HS sheet-H13 die steel interface were identified under various contact pressures, and it was found that the ECHTC increases exponentially with the pressure increasing. Both the physical simulation of DQBS and the HSBS experiment were performed to verify the ECHTC evaluated, and the maximum relative errors of 9.6 and 19.7 % were observed, respectively, between the predicted and measured temperature histories.
机译:重要的是,在硼钢(HSBS)的热冲压过程中,评估板模界面处的等效接触传热系数(ECHTC),以控制板的局部冷却速率,从而获得具有定制的组织和性能的部件。此外,对ECHTC的准确评估可以为HSBS过程的数值模拟提供可靠的热边界条件。在这项研究中,开发了一种简单有效的用于硼钢模具淬火(DQBS)的物理模拟装置,其中测量点的温度仅与ECHTC有关,从而提高了评估准确性。建立了基于FE的ECHTC逆评估优化模型。在不同的接触压力下,在B1500HS薄板-H13模具钢界面处的ECHTCs被确定,并且发现ECHTC随着压力的增加呈指数增加。进行了DQBS的物理模拟和HSBS实验,以验证所评估的ECHTC,并且在预测和测量的温度历史之间分别观察到最大相对误差分别为9.6和19.7%。

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