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Explosively Driven Shock Induced Damage in OFHC Copper

机译:OFHC铜的爆炸性驱动冲击诱导损伤

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OFHC Cu samples were subjected to shock loading using plane wave HE lenses to produce a uniaxial Taylor wave profile (shock followed by immediate release). Upon arrival of the shock wave at the free surface of the sample, the wave is reflected and propagates back into the sample as a release wave. It is the interaction of initial and reflected release waves that place the material in a localized state of tension which can ultimately result in damage and possibly complete failure of the material. The peak tensile stress and its location in the material are determined by the wave shape. Damage evolution processes and localized behavior are discussed based on results from time-resolved free surface velocity (VISAR) interferometry and post shock metallurgical analysis of the soft recovered samples.
机译:使用平面波HE镜片对OFHC Cu样品进行冲击载荷,以产生单轴Taylor波形曲线(休克,然后立即释放)。在样品的自由表面到达冲击波时,波被反射并作为释放波传播回样品。它是初始和反射释放波的相互作用,其将材料放置在局部张力状态下最终导致材料的损坏并可能完全失效。峰值拉伸应力及其在材料中的位置由波形确定。基于来自时分自由表面速度(VISAR)干涉法的结果和软回收样品的后冲击冶金分析来讨论损伤进化过程和局部化行为。

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