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Hot Press Forming of Tailor Welded Blank: Experiments and FE Modeling

机译:定制焊接毛坯的热压成型:实验和有限元建模

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Hot Press Forming (HPF) of Tailor Welded Blank (TWB) was investigated with particular focus on the formability and phase transformation of the constituent base materials. Dilatometric analyses were conducted to study strength differentials for various cooling rates after heat treatment. U-draw bending tests were performed to evaluate the influence of a number of process parameters, namely, blank and tool temperatures, and cooling time, on the mechanical properties of the product. Formability at elevated temperature was assessed using forming limit diagrams for each monolithic material under realistic hot press forming conditions. Lab-scaled forming tests of a newly designed B-pillar were carried out to evaluate the formability of TWB under an actual hot press forming process. Finally, coupled thermo-mechanical finite element simulations, which utilize flow stresses and forming limit diagrams determined under realistic HPF conditions, were carried out. In particular, finite element simulation results for the weld-line displacement and thinning of the TWB were compared to experimental data for validation purpose.
机译:对定制焊接毛坯(TWB)的热压成型(HPF)进行了研究,特别关注了组成基材的可成型性和相变。进行了热膨胀分析,以研究热处理后各种冷却速率的强度差异。进行了U形弯曲试验,以评估许多工艺参数(即毛坯和工具温度以及冷却时间)对产品机械性能的影响。在实际的热压成型条件下,使用每种整体材料的成型极限图评估了高温下的成型性。对新设计的B柱进行了实验室规模的成型测试,以评估TWB在实际热压成型过程中的可成型性。最后,进行了热机械有限元模拟,该模拟利用流动应力和在实际HPF条件下确定的成形极限图。特别是,为了验证目的,将TWB焊缝位移和变薄的有限元模拟结果与实验数据进行了比较。

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