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Experiments and simulated calculations on the resistance to low-velocity impact of layered plates with a sandwiched ERM

机译:夹层ERM的层板抗低速冲击的实验与模拟计算

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Comparison experiments and simulated calculations are conducted on the resistance to low-velocity (or low-energy) impact of layered structures with and without an electro-rheological material (ERM) sandwiched, under different electric voltages applied to the ERM layer. From the experiments, it is found that the stiffness of the specimen under different electric intensities applied to the ERM layer is approximately a constant. From the calculations, within the range of 0.0 kV/mm less than or equal to E less than or equal to 3.5 kV/mm, the resistance to impact decreases somewhat with the increasing electric intensity for the layered composite specimens. The same conclusion is obtained for a layered aluminum plate within the range of 0.0 kV/mm less than or equal to E less than or equal to 0.75 kV/mm. Meanwhile, data from the experiments and calculations show that these results are repeatable under different impact velocities. Further analysis by computations shows that the change of viscous proportional damping, [C] = alpha[M] + beta[C], is the main cause of the reduction of the specimen's resistance to impact, where the stiffness coefficient beta is the key factor. (C) 2003 Elsevier Ltd. All rights reserved. [References: 15]
机译:在施加到ERM层上的不同电压下,对夹有和不夹有电流变材料(ERM)的层状结构的低速(或低能量)冲击性能进行了比较实验和模拟计算。从实验中发现,在施加到ERM层的不同电强度下,样品的刚度近似恒定。通过计算,在小于或等于E的0.0kV / mm的范围内,小于或等于3.5kV / mm的范围内,随着层状复合样品的电强度的增加,耐冲击性有所降低。对于小于或等于E小于或等于0.75kV / mm的0.0kV / mm范围内的层状铝板,获得相同的结论。同时,来自实验和计算的数据表明,这些结果在不同的冲击速度下是可重复的。通过计算进一步分析表明,粘性比例阻尼的变化[C] = alpha [M] + beta [C]是降低试样抗冲击性的主要原因,其中刚度系数beta是关键因素。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:15]

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