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Testing Aluminum Alloy from Quasi-static to Dynamic Strain-rates with a Modified Split Hopkinson Bar Method

机译:用改进的拆分Hopkinson Bar方法将铝合金从准静态到动态应变率

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An aluminum alloy was tested at quasi-static to dynamic strain-rates (from 10~(-1) to 5 10~(3) s~(-1)), using a single measuring device, a modified Split Hopkinson Bar. A wave separation technique [Bussac et al., J Mech Phys Solids 50:321-350, 2002] based on the maximum likelihood method was applied to process the strain and velocity measurements recorded at various points on each bar. With this method, it is possible to compute the stress, strain, displacement and velocity at any point on the bar. Since the measurement time is unlimited, the maximum strain measured in a given specimen no longer decreases with the strain-rate, as occurs with the classical Split Hopkinson Bar method.
机译:使用单个测量装置,在准静态以动态应变率(10〜(-1)至50〜(3)),改进的分裂霍普金森棒以铝合金(从10〜(-1)至5 10〜(3)))测试。基于最大似然法[Bussac等,J Mech等,J Mech Phy Aligs 50:321-350,2002]基于最大似然方法来处理在每个条上的各个点记录的应变和速度测量。利用这种方法,可以在条形上的任何点计算应力,应变,位移和速度。由于测量时间是无限的,所以在给定试样中测量的最大应变不再随着应变速率而降低,如经典分裂霍普金森棒方法发生。

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