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A Comparative Study of Computer Simulation using High-Speed Tensile Test Results with Actual Crash Test Results of DP Steels

机译:DP钢的高速拉伸试验结果与实际碰撞试验结果的计算机仿真比较研究

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摘要

Dual Phase (DP) steel which has a soft ferrite phase and a hard martensite phase reveals both high strength and high ductility and has received increased attention for use in automotive applications. To conduct structural analysis to verify vehicle safety, highly credible experimental results are required. In this study, tensile tests were performed in a strain rate range from 10"4/s to 300/s for Sink Roll-Less (SRL) hot-dip metal coated sheets. Collision properties were estimated through simulation by LS-DYNA using the stress-strain curve obtained from the tensile test. The simulation results were compared with the actual crash test results to confirm the credibility of the simulation. In addition, a tensile test and a crash test with 2% prestrain and a baking (PB) specimen were evaluated identically because automotive steel is used after forming and painting. The mechanical behaviors were improved with an increasing strain rate regardless of the PB treatment. Thus, plastic deformation with an appropriate strain rate is expected to result in better formability and crash characteristics than plastic deformation with a static strain rate. The ultimate tensile strength (UTS) and absorbed energy up to 10% strain were improved even though the total elongation decreased after PB treatment, The results of the experimental crash test and computer simulation were slightly different but generally, a similar propensity was seen.
机译:具有软的铁素体相和硬的马氏体相的双相(DP)钢不仅具有高强度和高延展性,而且在汽车领域也越来越受到关注。为了进行结构分析以验证车辆安全性,需要高度可信的实验结果。在这项研究中,对沉没式冷浸(SRL)热浸镀金属板的拉伸速率在10“ 4 / s至300 / s的应变速率范围内进行了拉伸试验。通过LS-DYNA的模拟来评估碰撞性能。通过拉伸试验获得的应力-应变曲线,将模拟结果与实际碰撞试验结果进行比较,以确认模拟的可信度;此外,还进行了拉伸试验和2%预应变和烘烤(PB)试样的碰撞试验由于在成型和喷漆后使用了汽车钢,因此对它们进行了相同的评估;不管PB处理如何,机械性能都随着应变率的提高而改善,因此,具有适当应变率的塑性变形有望比塑性具有更好的成形性和耐撞性即使在PB处理后总伸长率降低,极限拉伸强度(UTS)和高达10%应变的吸收能也得到了改善,Th实验性碰撞测试和计算机仿真的结果略有不同,但总体上看,相似的倾向。

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