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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Predicting the Dynamic Compressive Strength of Carbonate Rocks from Quasi-Static Properties
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Predicting the Dynamic Compressive Strength of Carbonate Rocks from Quasi-Static Properties

机译:预测的动态抗压强度碳酸盐岩的静态属性

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In this study, the split Hopkinson pressure bar testing method was used to quantify the dynamic strength characteristics of rocks with short cylindrical specimens. Seventy dynamic compression tests were conducted on 10 different carbonate rocks with the split Hopkinson pressure bar apparatus. Experimental procedure for testing dynamic compressive strength and elastic behaviour of rock material at high strain rate loading is presented in the paper. Pulseshaper technique was adopted to obtain dynamic stress equilibrium at the ends of the sample and to provide nearly a constant strain rate during the dynamic loading. In addition to dynamic tests, the physical properties covering bulk density, effective porosity, P-wave velocity and Schmidt hardness of rocks, and mechanical properties such as quasi-static compressive strength and tensile strength were determined through standard testing methods. Multiple linear regression analyses were carried out to investigate the variation of dynamic compressive strength depending on physical and mechanical properties of rocks and loading rate. A three parameter model was found to be simple and provided the best surface fit to data. It was found that dynamic compressive strength of rocks increases with increase in loading rate and/or increase in rock property values except porosity. Statistical tests of regression results showed that quasi-static compressive strength and Schmidt hardness are most significant rock properties to adequately predict the dynamic compressive strength value among the other properties. However, P-wave velocity, quasi-static tensile strength of rocks could also be used to estimate the dynamic compressive strength value of rocks, as well, except the bulk density and effective porosity.
机译:在这项研究中,分离式霍普金森压杆测试方法被用来量化动态岩石的强度特征与短圆柱形标本。压缩测试进行了10个不同的碳酸盐岩与分离式霍普金森压酒吧设备。动态抗压强度和弹性岩石材料在高应变率的行为加载了。采用技术获得动态应力平衡的样本提供近期间恒定应变率动态加载。物理性质包括容重,有效孔隙度、纵波速度和施密特岩石的硬度,力学性能等静态抗压强度和抗拉强度测定通过标准测试方法。进行调查的变化动态抗压强度取决于岩石的物理和机械性能加载速率。很简单,提供最好的表面适合数据。岩石强度增加而增加加载速率和/或增加岩石属性除了孔隙度值。回归结果表明,静态抗压强度和施密特硬度最重要的岩石属性充分预测的动态抗压强度值其他属性。速度,准静态抗拉强度的岩石也可以用来估计动态吗岩石抗压强度值,除了体积密度和有效孔隙度。

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