不匹配金属的微粒冲击键合模式:从共变形到溅射和渗透

M. Hassani, D. Veysset, Yuchen Sun, K. Nelson, C. Schuh
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引用次数: 24

摘要

摘要:我们提出了一个全面的实验运动的高速微粒冲击与不同组合的颗粒和衬底材料,以确定可能的变形机制。基于对冲击部位的实验观察,我们确定了三种典型的行为模式,即飞溅、共变形和穿透。我们开发了一个理论框架来预测给定颗粒/衬底组合的工作状态,范围从光谱的两个极端的溅射和穿透,以及中心的共变形。我们提出了一个基于材料性质的冲击比,可以成功地量化光谱。当该比率接近1时,预计会产生共变形,而较大或较小的比率分别会产生穿透和飞溅。
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Microparticle Impact-Bonding Modes for Mismatched Metals: From Co-Deformation to Splatting and Penetration
Abstract We present a comprehensive experimental campaign of high-velocity microparticle impacts with different combinations of particle and substrate materials to identify possible deformation regimes. Based on experimental observations of the impact sites, we identify three typical modes of behavior, namely, splatting, co-deformation, and penetration. We develop a theoretical framework to predict the operative regime for a given particle/substrate combination, ranging from splatting and penetration at two extremes of a spectrum, and co-deformation in the center. We propose an impact ratio based on the materials’ properties, which can successfully quantify the spectrum. Co-deformation is expected when the ratio is around unity, while much larger or smaller ratios give rise to penetration and splatting, respectively.
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