【2h】

Hugoniot equation of state of rock materials under shock compression

机译:冲击压缩作用下岩石材料的Hugoniot状态方程

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摘要

Two sets of shock compression tests (i.e. conventional and reverse impact) were conducted to determine the shock response of two rock materials using a plate impact facility. Embedded manganin stress gauges were used for the measurements of longitudinal stress and shock velocity. Photon Doppler velocimetry was used to capture the free surface velocity of the target. Experimental data were obtained on a fine-grained marble and a coarse-grained gabbro over a shock pressure range of approximately 1.5–12 GPa. Gabbro exhibited a linear Hugoniot equation of state (EOS) in the pressure–particle velocity (P–up) plane, while for marble a nonlinear response was observed. The EOS relations between shock velocity (US) and particle velocity (up) are linearly fitted as US = 2.62 + 3.319up and US = 5.4 85 + 1.038up for marble and gabbro, respectively.This article is part of the themed issue ‘Experimental testing and modelling of brittle materials at high strain rates’.
机译:进行了两组冲击压缩测试(即常规冲击和反向冲击),以使用板冲击设备确定两种岩石材料的冲击响应。嵌入式锰应力计用于测量纵向应力和冲击速度。光子多普勒测速仪用于捕获目标的自由表面速度。在约1.5–12 GPa的冲击压力范围内,在细粒大理石和粗粒辉长岩上获得了实验数据。 Gabbro在压力-粒子速度(P-up)平面上表现出线性的Hugoniot状态方程(EOS),而大理石则观察到非线性响应。冲击速度(US)和质点速度(up)之间的EOS关系分别线性拟合为US = abb2.62 + 3.319up和US = 5.4 85 + 1.038up。本文是主题为“实验”的一部分高应变率下的脆性材料测试和建模”。

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