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Experimental Study on Conductivity Anisotropy of Limestone Considering the Bedding Directional Effect in the Whole Process of Uniaxial Compression

机译:单轴压缩全过程考虑层理定向效应的石灰岩电导各向异性实验研究

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摘要

Experimental studies were conducted on the changes of the potential differences in different directions during the uniaxial compression on limestone samples parallel and normal to the bedding plane. In the test, electric current was supplied at both ends of the samples, and concurrent measurement was conducted in four measuring lines at a 45-degree angle to each other. First, the change laws of the potential differences in different directions and the similarities and differences of rock samples were summarized. In regards to the uniaxial compression properties and crack growth, the above-mentioned similarities and differences were further analyzed. Then, the anisotropy factor was introduced to further explore the response characteristics. It was found that the anisotropic changes of rock samples went through three stages during the uniaxial compression process, providing a reference for describing the properties in different failure stages of rock samples and obtaining precursory information about the fracture. Besides, the relationship between the peak stress and initial potential difference in a direction normal to the current direction was obtained by means of data fitting, providing a new method of predicting the uniaxial compressive strength of rock samples. According to the preceding analysis, this paper studied rock anisotropy by considering the bedding directional effect in terms of conductivity and provided a reference for subsequent study on rock materials’ properties and engineering practices.
机译:对平行和垂直于顺层平面的石灰岩样品在单轴压缩过程中不同方向的电位差变化进行了实验研究。在测试中,在样品的两端提供电流,并且在彼此成45度角的四个测量线中进行同时测量。首先,总结了不同方向上电位差的变化规律以及岩石样品的异同。关于单轴压缩性能和裂纹扩展,进一步分析了上述异同。然后,引入各向异性因子以进一步探索响应特性。研究发现,岩石样品的各向异性变化在单轴压缩过程中经历了三个阶段,为描述岩石样品在不同破坏阶段的性质以及获得有关裂缝的先验信息提供了参考。此外,通过数据拟合获得了峰值应力与垂直于当前方向的初始电位差之间的关系,为预测岩石样品的单轴抗压强度提供了一种新方法。根据前面的分析,本文通过考虑电导率方面的层理方向效应来研究岩石的各向异性,并为后续研究岩石材料的性质和工程实践提供参考。

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