论文标题

高速度微观注射撞击测试

High-velocity micro-projectile impact testing

论文作者

Veysset, David, Lee, Jae-Hwang, Hassani, Mostafa, Kooi, Steven E., Thomas, Edwin L., Nelson, Keith A.

论文摘要

高速微粒的影响与从空间探索到加性制造的许多领域有关,可用于帮助了解极端动态条件下材料的物理和化学行为。在单个微粒撞击的实验技术方面的最新进展允许对大型样品的动态响应进行基本研究,包括软材料,纳米 - 复合材料和金属,低于108 s-1的应变速率。在这里,我们回顾了有关高速影响的实验方法,这些影响涵盖了15个弹丸质量的数量级和比较方法。这篇综述旨在介绍高速微粒影响技术的全面概述,以为不同材料测试场中的研究人员提供参考,并促进在各种影响器大小,几何形状和速度的动态测试中实验设计。接下来,我们使用激光诱导的粒子撞击测试平台进行回顾,其中包括目标,弹丸和协同目标粒子撞击响应,因此证明了该方法在影响保护和添加剂制造中的应用。我们结论是在高速影响领域中介绍未来的观点。

High-velocity microparticle impacts are relevant to many fields from space exploration to additive manufacturing and can be used to help understand the physical and chemical behaviors of materials under extreme dynamic conditions. Recent advances in experimental techniques for single microparticle impacts have allowed fundamental investigations of dynamical responses of wide-ranging samples including soft materials, nano-composites, and metals, under strain rates up to 108 s-1. Here we review experimental methods for high-velocity impacts spanning 15 orders of magnitude in projectile mass and compare method performances. This review aims to present a comprehensive overview of high-velocity microparticle impact techniques to provide a reference for researchers in different materials testing fields and facilitate experimental design in dynamic testing for a wide range of impactor sizes, geometries, and velocities. Next, we review recent studies using the laser-induced particle impact test platform comprising target, projectile, and synergistic target-particle impact response, hence demonstrating the versatility of the method with applications in impact protection and additive manufacturing. We conclude by presenting the future perspectives in the field of high-velocity impact.

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