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原煤与型煤损伤破坏的应力声发射变化特征对比研究
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作者 王林芝 刘冬梅 +2 位作者 王帅旗 曹阔 高林生 《工矿自动化》 CSCD 北大核心 2024年第5期125-134,共10页
在研究声发射特征与煤样和断裂的关系时,原煤和型煤都可用作实验样本。大多煤层材质较软,制造标准的原煤试样较为困难,因此使用型煤作为研究样本的实验较普遍,但型煤改变了煤的原始结构,影响了其物理和力学性质,使用型煤替代原煤作为实... 在研究声发射特征与煤样和断裂的关系时,原煤和型煤都可用作实验样本。大多煤层材质较软,制造标准的原煤试样较为困难,因此使用型煤作为研究样本的实验较普遍,但型煤改变了煤的原始结构,影响了其物理和力学性质,使用型煤替代原煤作为实验样本的适用性一直是学术界讨论的焦点。此外,目前对于原煤和型煤在假三轴压缩实验中表现出的声发射特征差异的研究相对有限。针对上述问题,开展了原煤和型煤假三轴压缩声发射实验,从力学性能、断裂模式和声发射时空演化、频带能量分布、非线性特征等方面着重讨论和分析。结果表明:加载过程中释放的声发射能量和峰值应力总能量与煤样强度密切相关,原煤主要为剪切和拉伸混合破坏模式,型煤主要为拉伸轴裂破坏模式;煤样的声发射位置分别对应其宏观破裂形态,但发生时间和空间分布不同;在峰前加载阶段,原煤的声发射信号相对较少,而型煤的声发射响应剧烈,并在峰值应力时刻达到最大值;通过小波包分析得到型煤的声发射频带能量分布范围小于原煤,原煤的声发射信号频率主要集中在10~120 kHz,而型煤的声发射信号仅在0~100 kHz频率范围内活跃,说明型煤的微破裂规模大于原煤;原煤和型煤的波形能量90%活跃在0~150 kHz;当加载试样接近失稳破坏时,即加载应力为峰值应力的99%左右时,原煤和型煤声发射信号的Hurst指数均大于0.5,表明声发射时间序列与加载过程具有长期相关性。 展开更多
关键词 原煤 型煤 声发射演化特征 假三轴压缩实验 频带能量分布 非线性特征 HURST指数
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Fracture evolution and localization effect of damage in rock based on wave velocity imaging technology 被引量:4
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作者 ZHANG Yan-bo YAO Xu-long +5 位作者 LIANG Peng WANG Ke-xue SUN Lin TIAN Bao-zhu LIU Xiang-xin WANG Shan-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第9期2752-2769,共18页
By utilizing wave velocity imaging technology,the uniaxial multi-stage loading test was conducted on siltstone to attain wave velocity imagings during rock fracture.Based on the time series parameters of acoustic emis... By utilizing wave velocity imaging technology,the uniaxial multi-stage loading test was conducted on siltstone to attain wave velocity imagings during rock fracture.Based on the time series parameters of acoustic emissions(AE),joint response characteristics of the velocity field and AE during rock fracture were analyzed.Moreover,the localization effect of damage during rock fracture was explored by applying wave velocity imagings.The experimental result showed that the wave velocity imagings enable three-dimensional(3-D)visualization of the extent and spatial position of damage to the rock.A damaged zone has a low wave velocity and a zone where the low wave velocity is concentrated tends to correspond to a severely damaged zone.AE parameters and wave velocity imagings depict the changes in activity of cracks during rock fracture from temporal and spatial perspectives,respectively:the activity of cracks is strengthened,and the rate of AE events increases during rock fracture;correspondingly,the low-velocity zones are gradually aggregated and their area gradually increases.From the wave velocity imagings,the damaged zones in rock were divided into an initially damaged zone,a progressively damaged zone,and a fractured zone.During rock fracture,the progressively damaged zone and the fractured zone both develop around the initially damaged zone,showing a typical localization effect of the damage.By capturing the spatial development trends of the progressively damaged zone and fractured zone in wave velocity imagings,the development of microfractures can be predicted,exerting practical significance for determining the position of the main fracture. 展开更多
关键词 rock mechanics acoustic emission(AE) wave velocity imaging technology tempo-spatial evolution characteristics localization effect of damage
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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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