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冻融循环作用下单裂隙类砂岩局部化损伤效应及端部断裂特性分析 被引量:31
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作者 申艳军 杨更社 +3 位作者 荣腾龙 贾海梁 王铭 刘慧 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2017年第3期562-570,共9页
寒区饱水裂隙岩体受反复冻融作用影响,沿裂隙端部出现裂纹萌生、延展、偏转、分叉等现象,造成裂隙端部局部化区域损伤,进而诱发端部断裂造成岩体整体失稳。现采用相似材料配制0°,30°,45°,60°,90°的单裂隙类砂... 寒区饱水裂隙岩体受反复冻融作用影响,沿裂隙端部出现裂纹萌生、延展、偏转、分叉等现象,造成裂隙端部局部化区域损伤,进而诱发端部断裂造成岩体整体失稳。现采用相似材料配制0°,30°,45°,60°,90°的单裂隙类砂岩试样,并对裂隙内部充分饱水,展开10,20,30,50次冻融循环试验,而后观测裂隙端部区域在不同裂隙倾角、冻融循环次数下局部化损伤效应差异规律。藉此,对裂隙岩体在冻融循环作用下的局部化损伤效应进行分析,并结合断裂力学应力叠加理论,验证了因局部化损伤效应造成的裂隙端部断裂特性及扩展路径规律。结果表明:(1)冻融循环作用下单裂隙岩体存在局部化损伤效应,按照局部区域宏观裂纹发育状况,可将裂隙端部划分为:断裂区、渐进损伤区、系统损伤区;(2)随着裂隙倾角增大,冻融循环过程造成的局部化损伤效应越不显著,对应的声波波速值越大;(3)冻融循环过程中,主要在30°,45°,60°斜裂隙岩体出现主裂纹分叉、偏转现象;(4)裂隙角度愈缓,冻融循环作用造成的主裂纹偏转现象越早产生,偏转方向逐渐趋于水平,且沿初始裂隙走向的延展长度越短;(5)冻融循环引起局部化损伤在上下端部存在差异,裂隙下端部较早发生宏观断裂,且倾角越大,差异现象越明显。研究将为冻融作用下裂隙岩体局部损伤及端部断裂演化规律提供技术参考。 展开更多
关键词 岩石力学 冻融循环 单裂隙岩体 局部化损伤效应 应力叠加原理
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Fracture evolution and localization effect of damage in rock based on wave velocity imaging technology 被引量:3
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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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