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Time-resolved dynamic compaction and tensile fracture of low-porosity aluminum under impact loading

机译:冲击载荷下低孔隙率铝的时间分辨动态压实和拉伸断裂

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摘要

Unlike the solid dense medium, the low-porosity metals exhibit many unique dynamic behaviors. These properties have been investigated in this work for aluminum with a porosity of 3.3% under high velocity and planar plate impact. A push-pull-type velocity interferometer system for any reflector was used to measure the rear free surface velocity profiles of the samples. Time-resolved dynamic compaction and tensile fracture properties are presented. Results demonstrated that there are three distinct shock compressive waves in succession, including elastic wave, compaction wave, and stable shock wave. The dynamic tensile fracture occurs after the porosity being fully compacted and the stable shock wave being formed. With the increase of impact velocity, the dynamic tensile strength becomes higher and the spalled layer becomes thicker. Nevertheless, the dynamic tensile strength of the shock compacted aluminum is apparently lower than that of the solid dense aluminum, and is approaching that of the aluminum alloy 6061-T6. Physical explanations are illustrated and discussed.
机译:与固体致密介质不同,低孔隙度金属表现出许多独特的动力学行为。在这项工作中,研究了铝在高速和平板冲击下的孔隙率为3.3%时的这些性能。用于任何反射器的推挽式速度干涉仪系统用于测量样品的后自由表面速度分布。给出了时间分辨的动态压实和拉伸断裂性能。结果表明,相继出现了三种不同的冲击压缩波,分别是弹性波,压实波和稳定冲击波。动态拉伸断裂发生在孔隙被完全压实并形成稳定的冲击波之后。随着冲击速度的增加,动态抗拉强度变高,剥落层变厚。然而,冲击压实铝的动态拉伸强度显然低于固态致密铝的动态拉伸强度,并且接近铝合金6061-T6的动态拉伸强度。说明和讨论了物理解释。

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