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Dynamic behaviors of visco-elastic thin-walled spherical shells impact onto a rigid plate

机译:粘弹性薄壁球形壳的动力学行为撞击到刚性板上

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As a representative structure, ping-pong balls are usually used to study the mechanical properties of thin-walled spherical shells. In a previous study, the dynamic behaviors of ping-pong balls impinged onto a rigid plate were investigated. It was found that the dynamic deformation energy of the balls could be several times higher than that under quasi-static compression, which could not be completely explained by elastic-plastic material property, strain-rate and inertial effects. In this paper, more impact tests were conducted and the details including the contact time, deformation and rebound behaviors with different impact velocities were reinvestigated. Based on the experimental results, visco-elastic material model is applied and the numerical simulation of thin-walled spherical shells impact onto a plate is performed, in which the influences of the visco-elastic parameters and the impact velocity on the dynamic behaviors are studied. By adjusting the visco-elastic parameters, the contact time, deformation, and the coefficient of restitution agree well with the experimental results.
机译:作为一种代表性结构,乒乓球通常用于研究薄壁球形壳的机械性能。在以前的研究中,研究了乒乓球撞击到刚性板上的动力学行为。研究发现,球的动态变形能比准静态压缩下的动变形能高出好几倍,而弹塑性材料的性质,应变率和惯性效应并不能完全解释这一点。本文进行了更多的冲击试验,并重新研究了不同冲击速度下的接触时间,变形和回弹行为等细节。基于实验结果,应用粘弹性材料模型,对薄壁球形壳撞击板进行了数值模拟,研究了粘弹性参数和撞击速度对动力学行为的影响。 。通过调整粘弹性参数,接触时间,变形和恢复系数与实验结果吻合良好。

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