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首页> 外文期刊>International Journal of Automotive Technology >APPLICATION OF WARM FORMING ALUMINUM ALLOY PARTS FOR AUTOMOTIVE BODY BASED ON IMPACT
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APPLICATION OF WARM FORMING ALUMINUM ALLOY PARTS FOR AUTOMOTIVE BODY BASED ON IMPACT

机译:基于碰撞的热成型铝合金零件在汽车车身上的应用

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摘要

Aluminum alloys are important technological materials for the application on lightweight design and development of vehicle body. The research works for characterizing warm forming behavior of aluminum alloys have generally reported. However, there were few researches focused on the flow behavior of warm forming aluminum alloy parts for the energy absorbing performance during crash. The tensile stress-strain response for warm forming AA5182 specimens tested under the strain rates of 0.0015 s~(-1), 0.015 s~(-1), 0.15 s~(-1) and 1.5 s~(-1) are presented in this paper. The data were fit to the Johnson-Cook constitutive model for the simulation of frontal impact. The energy absorbing performance of warm forming AA5182 parts were analyzed, The results show the higher flow stresses and lower fractured strain of warm forming aluminum alloy parts with the strain rate increasing. The flow stresses of warm forming aluminum alloy parts are insensitive to strain rate, while the fractured strain and elongation are sensitive to strain rate. The intrusion displacement of the warm forming aluminum alloy parts is appropriate for the satisfaction of vehicle body design avoiding the excessive deformation for the injury of passenger or the failure of frontal door opening. The feasibility of warm forming aluminum alloy parts is verified with the analysis of energy absorbing performance, stiffness and modal of vehicle body.
机译:铝合金是用于车身轻量化设计和开发的重要技术材料。通常已经报道了表征铝合金的热成形行为的研究工作。然而,很少有研究集中于热成型铝合金零件在碰撞过程中的能量吸收性能方面的流动行为。给出了在0.0015 s〜(-1),0.015 s〜(-1),0.15 s〜(-1)和1.5 s〜(-1)应变速率下测试的AA5182热成型试样的拉伸应力-应变响应。在本文中。数据符合Johnson-Cook本构模型,用于模拟正面碰撞。分析了热成形AA5182零件的能量吸收性能,结果表明,随着应变率的增加,热成形铝合金零件的流动应力较高,断裂应变较低。热成型铝合金零件的流应力对应变率不敏感,而断裂应变和伸长率对应变率不敏感。热成型铝合金零件的侵入位移适合满足车身设计要求,避免了因乘客受伤或前门打开失败而引起的过度变形。通过对车身的能量吸收性能,刚度和模态进行分析,验证了铝合金热成型的可行性。

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