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Shock wave response of a zirconium-based bulk metallic glass and its composite

机译:锆基大块金属玻璃及其复合材料的冲击波响应

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摘要

A zirconium-based bulk metallic glass, Zr41.2Ti13.8Cu12.5Ni10Be22.5 (Vit 1), and its composite, Zr56.3Ti13.8Cu6.9Ni5.6Nb5.0Be12.5 (beta-Vit), were subjected to planar impact loading. A surprisingly low amplitude elastic precursor and bulk wave, corresponding to the elastic response of the "frozen structure" of the intact metallic glasses, were observed to precede the rate-dependent large deformation shock wave. A concave downward curvature after the initial increase of the U-s-U-p shock Hugoniots suggests that a phase-change-like transition occurred during shock compression. Further, compression damage occurred due to the shear localization. The spalling in Vit 1 was induced by shear localization, while in beta-Vit, it was due to debonding of the beta-phase boundary from the matrix. The spall strengths at strain rate of 2x10(6) s(-1) were determined to be 2.35 and 2.11 GPa for Vit 1 and beta-Vit, respectively.
机译:锆基大块金属玻璃Zr41.2Ti13.8Cu12.5Ni10Be22.5(Vit 1)及其复合材料Zr56.3Ti13.8Cu6.9Ni5.6Nb5.0Be12.5(beta-Vit)受到平面冲击加载中。观察到与完整金属玻璃的“冻结结构”的弹性响应相对应的令人惊讶的低振幅弹性前体波和体波在速率相关的大变形冲击波之前。 U-s-U-p冲击初始增加后,凹形的向下曲率Hugoniots提示在冲击压缩过程中发生了类似相变的过渡。此外,由于剪切局部化而发生压缩损伤。 Vit 1中的剥落是由剪切局部化引起的,而在beta-Vit中,则是由于β相边界与基体的脱键而引起的。确定Vit 1和beta-Vit的应变率为2x10(6)s(-1)时的剥落强度分别为2.35和2.11 GPa。

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