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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Cracking mechanisms in granite rocks subjected to uniaxial compression by moment tensor analysis of acoustic emission
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Cracking mechanisms in granite rocks subjected to uniaxial compression by moment tensor analysis of acoustic emission

机译:花岗岩岩体单轴压缩开裂机理的声发射矩张量分析

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In underground engineering structures, rock mass stability is influenced by the excavation with the stress concentrated at the roof and side wall. In this paper, acoustic emission (AE) technique and moment tensor (MT) analysis were both applied to study the behavior of coarse-grained granite samples, containing an inverted U-shaped opening, which were subjected to uniaxial compression. The resolved micro-crack types were presented in terms of their spatial-temporal evolution and change in their proportions throughout the tests. The AE hypocenter locations were calculated using the Simplex algorithm and the micro-crack fracture modes were assessed using the MT analysis. AE events, in most of the cases, were prone to cluster in zonal areas from the top to the bottom of the samples. Micro-cracks were classified to shear, mixed-mode and tensile cracks. Shear-type cracks, accounting for almost 60% of total number of AE events, were dominant, compared to the tensile-type cracks. Moreover, shear micro-cracks were predominantly observed at the sidewall whereas tensile micro-cracks were dominant at regions around the roof of the inverted U-shaped opening. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在地下工程结构中,岩体稳定性受开挖影响,应力集中在屋顶和侧壁。在本文中,声发射(AE)技术和矩张量(MT)分析都用于研究包含倒U形开口并经过单轴压缩的粗粒花岗岩样品的行为。在整个测试过程中,根据它们的时空演化和比例变化来介绍已解决的微裂纹类型。使用Simplex算法计算AE震中位置,并使用MT分析评估微裂纹断裂模式。在大多数情况下,AE事件易于从样品的顶部到底部聚集在区域区域中。微裂纹分为剪切裂纹,混合模式裂纹和拉伸裂纹。与拉伸型裂纹相比,剪切型裂纹占主要的AE事件总数的60%。此外,在侧壁处主要观察到剪切微裂纹,而在倒U形开口顶部周围的区域中,拉伸微裂纹占主导。 (C)2014 Elsevier Ltd.保留所有权利。

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