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含水率对红砂岩特征应力及声发射特性的影响 被引量:23
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作者 赵奎 冉珊瑚 +2 位作者 曾鹏 杨道学 腾天野 《岩土力学》 EI CAS CSCD 北大核心 2021年第4期899-908,共10页
为了探讨含水率对红砂岩特征应力及声发射响应特征的影响,利用RMT-150C岩石力学压力试验机和PCI-II AE win型声发射系统开展了不同含水率条件下红砂岩试件单轴压缩试验。对水侵蚀作用下红砂岩的物理力学参数及特征应力演化机制进行了分... 为了探讨含水率对红砂岩特征应力及声发射响应特征的影响,利用RMT-150C岩石力学压力试验机和PCI-II AE win型声发射系统开展了不同含水率条件下红砂岩试件单轴压缩试验。对水侵蚀作用下红砂岩的物理力学参数及特征应力演化机制进行了分析,探究在不同含水率条件下声发射(宽、窄频带)时间序列模式的演化规律,同时基于累计声发射事件数与统计力学理论构建了红砂岩的损伤演化模型。试验结果表明:(1)P波波速随着含水率增加呈现先减小后增加的变化趋势,当含水饱和度达到临界值时,P波波速会降到最低值;(2)窄频带接收传感器接收的声发射信号与红砂岩内部颗粒间的摩擦作用息息相关,而宽频带接收传感器接收的声发射信号与红砂岩内部裂纹演化存在着内在联系;(3)水对声发射事件率(宽频带)在裂纹非稳定扩展阶段影响相对较为显著,对特征应力与强度的比值影响甚微,但对各阶段应变百分比作用效果相对较为明显,随着含水率的增加,红砂岩试件的失效模式由脆性破坏逐渐向延展性破坏转变;(4)随着含水率的增加,声发射事件率(窄频带)活跃期呈现后移的变化趋势,干燥、自然与饱和状态下岩石试件声发射模式分别为主震型、前震–主震–后震型和群震型;(5)基于声发射累计事件数(宽、窄频带)与统计力学理论构建的损伤演化模型可将不同含水率条件下红砂岩试件的损伤过程分为4个阶段:初始损伤阶段、损伤稳定发展阶段、损伤加速发展阶段及损伤破坏阶段。 展开更多
关键词 含水率 特征应力 响应频带 声发射模式 损伤系数
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数学实验揭示的岩体声发射参数变化 被引量:2
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作者 逄焕东 姜福兴 张兴民 《防灾减灾工程学报》 CSCD 2004年第2期158-161,共4页
对非均匀性材料的破坏过程进行数学实验。方法是用随机数值矩阵描述岩石材料的非均匀性 ,依据矩阵数值大小与图形亮度的对应关系 ,用不同亮度的图形单元表示不同岩石单元的受力和声发射状态。单元超过受力极限时破裂产生声发射。模拟材... 对非均匀性材料的破坏过程进行数学实验。方法是用随机数值矩阵描述岩石材料的非均匀性 ,依据矩阵数值大小与图形亮度的对应关系 ,用不同亮度的图形单元表示不同岩石单元的受力和声发射状态。单元超过受力极限时破裂产生声发射。模拟材料受外荷载时的变化并且计算了几个声发射参数的变化。结果表明破裂过程中不同声发射事件的距离、能量和频数及其差分的变化趋势高度一致。在此基础上建立了安全系数与距离、能量和频数及其差分的关系。对得到的数值进行归一化处理 ,可用来预报岩石材料的安全状况或破裂危险。 展开更多
关键词 数学实验 非均质性 图形矩阵 声发射模式
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Strength and damage evolution mechanism of rock mass with holes under cyclic loading
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作者 LIU Hong-tao HAN Zi-jun +6 位作者 GUO Xiao-fei LIU Qin-yu QIAO Zhong-jin LIANG Jia-lu CHENG Wen-cong ZHANG Xi-ying ZHANG Yu-qi 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2717-2735,共19页
The damage and failure law of rock mass with holes is of great significance to the stability control of roadways. This study investigates the mechanical properties and failure modes of porous rock masses under cyclic ... The damage and failure law of rock mass with holes is of great significance to the stability control of roadways. This study investigates the mechanical properties and failure modes of porous rock masses under cyclic loading, elucidates the acoustic emission (AE) characteristics and their spatial evolution, and establishes the interrelation among AE, stress, strain, time, and cumulative damage. The results reveal that the rock mass with holes and the intact rock mass show softening and hardening characteristics after cyclic loading. The plastic strain of the rock mass with holes is smaller than that of the intact rock mass, and the stress −strain curve shows hysteresis characteristics. Under uniaxial compression, the pore-bearing rock mass shows the characteristics of higher ringing count, AE energy, b-value peak, and more cumulative ringing count in the failure stage, while it shows lower characteristics under cyclic action. At the initial stage of loading, compared with the intact rock mass, the pore-containing rock mass shows the characteristics of a low b-value. The AE positioning and cumulative damage percentage are larger, and the AE positioning is denser around the hole. The specimen with holes is mainly shear failure, and the complete specimen is mainly tensile shear failure. 展开更多
关键词 roadway surrounding rock control acoustic emission cyclic loading failure mode precursor of destruction
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Effect of heterogeneity on mechanical and acoustic emission characteristics of rock specimen 被引量:8
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作者 李术才 李国莹 《Journal of Central South University》 SCIE EI CAS 2010年第5期1119-1124,共6页
The influence of heterogeneity on mechanical and acoustic emission characteristics of rock specimen under uniaxial compress was studied with numerical simulation methods.Weibull distribution function was adopted to de... The influence of heterogeneity on mechanical and acoustic emission characteristics of rock specimen under uniaxial compress was studied with numerical simulation methods.Weibull distribution function was adopted to describe the mesoscopic heterogeneity of rocks.The failure process of heterogeneous rock specimen under uniaxial loading was simulated using FLAC 3D software.Five schemes were adopted to investigate the influence of heterogeneity.The results demonstrate that as the homogeneity increases,the peak strength and brittleness of rocks increase,and the macro elastic modulus improves as well.Heterogeneity has great influence on macro elastic modulus and strength when the homogeneity coefficient is less than 20.0.The volume expansion is not so obvious when the homogeneity increases.As the homogeneity coefficient increases the acoustic emissions modes change from swarm shock to main shock.When the homogeneity coefficient is high,the cumulative acoustic emission events-axial strain curve is gentle before the rock failure.The numerical results agree with the previously numerical results and earlier experimental measurements. 展开更多
关键词 HETEROGENEITY acoustic emission strain softening numerical simulation uniaxial compression elastic modulus
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