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Inverse Characterization Method for Mechanical Properties of Strain/Strain-Rate/Temperature/Temperature-History Dependent Steel Sheets and Its Application for Hot Press Forming

机译:应变/应变率/温度/温度-历史相关钢板力学性能的逆表征方法及其在热压成型中的应用

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摘要

In order to measure the flow curves of steel sheets at high temperatures, which are dependent on strain and strain rate as well as temperature and temperature history, a tensile test machine and specimens were newly developed in this work. Besides, an indirect method to characterize mechanical properties at high temperatures was developed by combining experiments and its numerical analysis, in which temperature history were also accounted for. Ultimately, a modified Johnson-Cook type hardening law, accounting for the dependence of hardening behavior with deterioration on strain rate as well as temperature, was successfully developed covering both pre- and post-ultimate tensile strength ranges for a hot press forming steel sheet. The calibrated hardening law obtained based on the inverse characterization method was then applied and validated for hot press forming of a 2-D mini-bumper as for distributions of temperature history, thickness and hardness considering the continuous cooling transformation diagram. The results showed reasonably good agreement with experiments
机译:为了测量取决于应变和应变率以及温度和温度历史的高温钢板的流动曲线,这项工作中新开发了拉伸试验机和试样。此外,通过结合实验和数值分析,开发了一种间接表征高温机械性能的方法,其中还考虑了温度历史。最终,成功开发了一种改良的Johnson-Cook型硬化定律,该定律考虑了硬化行为随应变率和温度的降低而变的依赖性,成功地涵盖了热压成型钢板最终和最终的拉伸强度范围。然后应用基于逆表征方法获得的校准硬化规律,并考虑到连续冷却转变图,对二维微型保险杠的热压成型进行了热压成型,以验证温度历史,厚度和硬度的分布。结果显示与实验相当吻合

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