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首页> 外文期刊>Journal of materials in civil engineering >Microcracking Mechanism Analysis of Rock Failure in Diametral Compression Tests
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Microcracking Mechanism Analysis of Rock Failure in Diametral Compression Tests

机译:径向压缩试验中岩石破坏的微裂纹机理分析

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摘要

A moment tensor analysis of acoustic emission was applied to quantitatively study the microcracking mechanism and damage evolution process in cylindrical specimens of granite and sandstone under diametral compression. It was found that the localized damage zone tended to originate and propagate from the vicinity of the loading ends. During the damage accumulation process, the tensile cracks played a dominant role in number, but the acoustic emission (AE) energy release of microcracks of different types presented an inconsistent trend for the two types of rock. Scanning electron microscope (SEM) observations on the fractured surfaces were conducted, which indicated that during the rock failure process there coexisted microcracks of three typestensile, shear, and mixed-modedue to the heterogeneity of the mechanical properties of the rock. The microscopic observations using a polarized light microscope technique revealed that the mineralogical composition and microstructure of rock had a significant effect on its microcracking mechanism.
机译:应用声发射矩张量分析定量研究了在径向压缩下花岗岩和砂岩圆柱试样的微裂纹机理和损伤演化过程。已经发现,局部损坏区域倾向于从载荷端附近开始并传播。在损伤累积过程中,拉伸裂纹在数量上起主导作用,但是不同类型的微裂纹的声发射(AE)能量释放呈现出两种岩石不一致的趋势。进行了扫描电子显微镜(SEM)观察断裂表面,这表明在岩石破坏过程中,由于岩石力学性能的异质性,存在三种类型的拉伸,剪切和混合模态的微裂纹。偏光显微镜技术的显微观察表明,岩石的矿物学组成和微观结构对其微裂纹机理有重要影响。

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