High velocity impact of an Fe/Cr/Mn/Ni high entropy alloy

M. Hawkins, S. A. Thomas, R. Hixson, Nan Li, S. Fensin
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引用次数: 4

Abstract

A series of shock loading experiments were conducted on High Entropy Alloy (HEA) samples consisting of Fe/Cr/Mn/Ni in weight percentages of 25.2/23.5/24.8/26.5. Characterizing this transition metal alloy is a first step in understanding the shock compression response of this relatively new class of alloy. A single stage light gas gun was used to conduct a series of flyer plate symmetric impact experiments to obtain fundamental dynamic properties. Photonic Doppler Velocimetry (PDV) diagnostics were employed to measure the free surface velocity on the back of each target during dynamic compression. These experiments yielded four data points that are in reasonable agreement with an estimated Hugoniot for the material.
Fe/Cr/Mn/Ni高熵合金的高速冲击
对重量百分比为25.2/23.5/24.8/26.5的Fe/Cr/Mn/Ni高熵合金(HEA)试样进行了一系列冲击载荷试验。表征这种过渡金属合金是了解这种相对较新的合金的冲击压缩响应的第一步。采用单级轻气枪进行了一系列飞片对称冲击实验,获得了飞片的基本动力学特性。采用光子多普勒测速(PDV)诊断技术测量了动态压缩过程中每个目标背面的自由表面速度。这些实验产生了四个数据点,这些数据点与材料的估计Hugoniot基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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