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Modelling the effect of forming history in impact simulations: evaluation of the effect of thickness change and strain hardening based on experiments

机译:在冲击模拟中对成形历史的影响进行建模:根据实验评估厚度变化和应变硬化的影响

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摘要

Stamping processes induce plastic strain and changes in the thickness, shape and mechanical behaviour of sheet metal parts. Simulated crash tests on vehicles should theoretically take these changes into account in order to be as realistic as possible, but this is not actually feasible because the calculations required would be too time-consuming. Crash-modelling calculations, therefore, have to be based on simplifying hypotheses about the geometry and the mechanical behaviour of body parts. This study deals with the influences of such hypothesis on the impact behaviour of a 1 -mm-thick steel dome bulged plastically at different thick strain levels ranging from -37% to -6% and impacted by an instrumented projectile with 13 m/s initial speed. Experimental results are compared to several impact finite element simulations based on different simplifying hypotheses about the geometry of the bulge and the strain hardening of the sheet metal and performed with the LS-DYNA finite element code.
机译:冲压过程会引起塑性应变,并会改变钣金零件的厚度,形状和机械性能。理论上在车辆上进行的碰撞测试应该在理论上考虑这些变化,以便尽可能逼真,但这实际上是不可行的,因为所需的计算将非常耗时。因此,碰撞建模计算必须基于简化有关身体部位的几何形状和机械行为的假设。这项研究处理了这种假设对厚度为1毫米的钢穹顶在-37%至-6%的不同厚应变水平下塑性膨化并受到初始13 m / s的仪器弹的影响速度。将实验结果与几种冲击有限元模拟进行比较,这些模拟基于关于凸部几何形状和钣金应变硬化的不同简化假设,并使用LS-DYNA有限元代码执行。

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