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Wave Dispersion and Attenuation in Viscoelastic Split Hopkinson Pressure Bar

机译:粘弹性分裂霍普金森压力杆中的波色散和衰减

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The Split Hopkinson Pressure Bar (SHPB) is most commonly used facility to obtain material properties at high strain rates. Testing of soft materials using this method requires that bars made of low impedance material should be used, in order to improve signal-to-noise ratio of transmitted stress. However, utilization of such bars poses some difficulties in data processing as the wave dispersion and attenuation becomes noticeable due to their viscoelastic nature. Wave propagation coefficients of a viscoelastic pressure bar are evaluated using incident and reflected strain waves generated through impact of two different length striker bars. Two approaches are proposed for propagation coefficient measurement in this study, namely direct and waves-overlap. Using two approaches, it is found that the calculated attenuation coefficients are same, while the wave numbers are different. The difference in wave number in the case of two approaches is due to the difference in calculated phase change of incident and reflected waves, which is found as integer multiple of 2n. Moreover, propagation coefficients calculated through different striker impacts are found different. The propagation coefficient found through long striker impact, when used for propagation response prediction of waves generated by short striker impact, resulted in high oscillations in predicted waves.
机译:斯普利特霍普金森压力棒(SHPB)是在高应变速率下获得材料性能的最常用工具。使用此方法测试软材料要求使用低阻抗材料制成的条,以提高传递应力的信噪比。但是,由于它们的粘弹性,波的分散和衰减变得很明显,因此利用这种条在数据处理中带来一些困难。粘弹性压力棒的波传播系数是通过两个不同长度的撞针的撞击产生的入射和反射应变波来评估的。本研究提出了两种测量传播系数的方法,即直接法和波重叠法。使用两种方法,发现计算的衰减系数相同,而波数不同。在两种方法中,波数的差异是由于入射波和反射波的计算出的相变差异所致,该差异是2n的整数倍。此外,发现通过不同的撞球冲击计算的传播系数也不同。通过长撞针撞击发现的传播系数,当用于短撞针撞击产生的波的传播响应预测时,会导致预测波中出现高振荡。

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