FEA of lab scale drop test machine

Muhammad Waleed Anjum, M. Z. Iqbal, Rabia Andleeb
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Abstract

Drop testing is very important in many industries. In industries, the items face severe environmental conditions during their working life. These environmental conditions can be due to high temperature, high pressure, vibration, transportation effect and it can be shock effects. Drop testing is used for shock effects. First of all, theoretical modeling was done for the drop table to check that either it can survive the applied shock or not. Then a commercial finite element software ANSYS/LS-DYNA which incorporates the pre and post processes of ANSYS with the solver of LS-DYNA is used to investigate the response of the drop table. Highest shock produces when drop table hits the mild steel programmer (target) because of its highest stiffness. More the programmer is stiff, less the deformation would be produced and contact time will also be less. Due to this less contact time, less energy is transmitted to the programmer and more energy is transmitted to the drop table and high stresses are produced. Drop height has direct relation with shock and stresses produced. Shock amplitude keep on decreasing with decreasing the drop height.
实验室规模跌落试验机的有限元分析
跌落测试在许多行业中都非常重要。在工业中,这些物品在其使用寿命期间面临严峻的环境条件。这些环境条件可因高温、高压、振动、输送等影响而受到冲击影响。跌落试验用于冲击效果。首先,对跌落台进行了理论建模,以验证跌落台是否能够承受冲击。然后利用商用有限元软件ANSYS/LS-DYNA将ANSYS的前后处理过程与LS-DYNA求解器相结合,对跌落表的响应进行了研究。当跌落台撞击低碳钢编程器(目标)时产生最大的冲击,因为它的刚度最高。程序员越僵硬,产生的变形就越少,接触时间也就越短。由于接触时间减少,传递给编程器的能量减少,传递给跌落台的能量增加,从而产生高应力。跌落高度与产生的冲击和应力有直接关系。冲击振幅随落点高度的减小而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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