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A three-dimensional FE analysis of large deformations for impact loadings using tetrahedral elements

机译:使用四面体单元对冲击载荷的大变形进行三维有限元分析

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A three-dimensional dynamic program for the anaysis of large deformations in contact-penetration problems is developed using the finite element Lagrangian method with explicit time integration. By incorporating a tetrahedral element, which allows a single-point integration without a special hourglass control scheme, this program can be more effective to the present problem. The position code algorithm is used to search contact surface. Eroding surfaces are also considered. The defense node algorithm was slightly modified for the calculation of contact forces. A study of obliquity effects on metallic plate perforation and ricochet processes in thin plates impacted by a sphere was conducted. It is well simulated that on separation of two parts of the sphere, the portion still within the crater tends to perforate, while the portion in contact with the plate surface ricochets. This deformation pattern is observed in experiments, especially at high obliquities. A long rod that impacts an oblique steel plate at high impact velocity was also simulated in order to study the dynamics of the rod caused by the three dimensional asymmetric contact. The agreement between simulated and experimental results is quite good. Fracture phenomena occuring at high obliquity deserves further investigations.
机译:使用具有显式时间积分的有限元拉格朗日方法,开发了一种用于分析接触穿透问题中大变形的三维动态程序。通过合并四面体元素,该元素无需特殊的沙漏控制方案即可进行单点积分,因此该程序对于当前问题可能更为有效。位置码算法用于搜索接触面。还考虑了腐蚀表面。略微修改了防御节点算法,以计算接触力。研究了倾斜对球体撞击的薄板中金属板穿孔和跳弹过程的影响。可以很好地模拟,当球体的两个部分分开时,仍在陨石坑内的那部分倾向于穿孔,而与板表面的弹跳线接触的那部分则倾向于。在实验中观察到这种变形模式,尤其是在高倾斜度下。为了研究由三维非对称接触引起的棒的动力学,还模拟了以高冲击速度冲击斜钢板的长棒。模拟结果与实验结果之间的一致性很好。高倾角时发生的断裂现象值得进一步研究。

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