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不同荷载作用下拉破裂的声发射特征研究 被引量:3
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作者 郭彦双 朱维申 +3 位作者 李术才 林春金 温暖冬 杨磊 《岩土力学》 EI CAS CSCD 北大核心 2006年第S2期1055-1058,共4页
采用类岩石材料研究了不同加载条件下的张拉裂纹的破裂过程,并利用声发射(AE)测试技术分析了劈拉试样和三点弯曲试样在断裂过程中裂纹的萌生、起裂、扩展和破裂全过程的声发射特征。试验结果表明,声发射的阶段性突发特征反映了张拉裂纹... 采用类岩石材料研究了不同加载条件下的张拉裂纹的破裂过程,并利用声发射(AE)测试技术分析了劈拉试样和三点弯曲试样在断裂过程中裂纹的萌生、起裂、扩展和破裂全过程的声发射特征。试验结果表明,声发射的阶段性突发特征反映了张拉裂纹阶段性扩展的力学机制。但是,在不同的加载条件下,张拉破裂的声发射特征有所差异:在弯拉应力作用下,试样拉破裂的声发射特征表现可分为声发射数的渐进增长、快速增长、突发式增长和逐渐下降4个阶段;而在劈拉应力作用下,试样破裂的声发射特征可分为声发射数缓慢增长、声发射数突发和声发射数的稳定发展3个阶段。在弯拉应力作用下,裂纹的萌生和聚集阶段的声发射特征明显,但在劈拉应力作用下几乎观察不到其声发射特征变化。不同破裂模式下的声发射特征值得进一步研究。 展开更多
关键词 三点弯曲 劈拉 发射(ae)特征 断裂 扩展
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Macro and meso characteristics evolution on shear behavior of rock joints 被引量:1
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作者 李凯辉 曹平 +1 位作者 张科 钟涌芳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3087-3096,共10页
Direct shear tests were conducted on the rock joints under constant normal load(CNL), while the acoustic emission(AE) signals generated during shear tests were monitored with PAC Micro-II system. Before and after shea... Direct shear tests were conducted on the rock joints under constant normal load(CNL), while the acoustic emission(AE) signals generated during shear tests were monitored with PAC Micro-II system. Before and after shearing, the surfaces of rock joints were measured by the Talysurf CLI 2000. By correlating the AE events with the shear stress-shear displacement curve, one can observe four periods of the whole course of shearing of rock joints. By the contrast of AE location and actual damage zone, it is elucidated that the AE event is related to the morphology of the joint. With the increase of shearing times, the shear behavior of rock joints gradually presents from the response of brittle behavior to that of ductile behavior. By combining the results of topography measurement, four morphological parameters of joint surface, S p(the maximum height of joint surface), N(number of islands), A(projection area) and V(volume of joint) were introduced, which decrease with shearing. Both the joint roughness coefficient(JRC) and joint matching coefficient(JMC) drop with shearing, and the shear strength of rock joints can be predicted by the JRC-JMC model. It establishes the relationship between micro-topography and macroscopic strength, which have the same change rule with shearing. 展开更多
关键词 rock joint shear behavior surface morphology acoustic emission joint roughness coefficient (JRC) joint matchingcoefficient (JMC)
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