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Experimental study on the shear behavior of grout-infilled specimens and micromechanical properties of grout-rock interface 被引量:1
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作者 LI Wen-shuai JIANG Bang-you +2 位作者 GU Shi-tan YANG Xu-xu Faiz U.A.SHAIKH 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1686-1700,共15页
The grout-rock interfacial property is one of the key factors associated with the strength of grouted rock masses.In this study,direct shear tests and nanoindentation tests were adopted to investigate the mechanical p... The grout-rock interfacial property is one of the key factors associated with the strength of grouted rock masses.In this study,direct shear tests and nanoindentation tests were adopted to investigate the mechanical properties of the grout-rock interface at both the macroscale and microscale.The cohesion of the cement specimens was higher than that of the grout-infilled joint specimens,while their internal friction angle was lower than that of the grout-infilled joint specimens.A“separation method”for identifying the different phases according to the qualitative and quantitative estimations was introduced,and the irregular interfacial transition zone(ITZ)thickness and elastic modulus were estimated.The ITZ thickness of the grout-infilled sandstone specimen ranged from 0 to 30μm,whereas it was within the range of 10-40μm for the grout-infilled mudstone specimen.The average elastic modulus of the ITZ in grout-infilled sandstone and mudstone specimens was approximately 58.2%and 54.1%lower than that of the bulk grout,respectively.Regarding the incidence of the rock type,the interlacing between the grout and sandstone was better developed.The ITZ with a higher porosity and lower modulus had a significant effect on the mechanical properties of the grout-infilled specimens. 展开更多
关键词 grout-rock interface shear mechanical parameter micromechanical property interfacial transition zone
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Physical and mechanical properties of sandstone containing a single fissure after exposure to high temperatures 被引量:19
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作者 Zhu Tantan Jing Hongwen +3 位作者 Su Haijian Yin Qian Du Mingrui Han Guansheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期319-325,共7页
In order to investigate the physical and mechanical properties of sandstone containing fissures after exposure to high temperatures,fissures with different angles α were prefabricated in the plate sandstone samples,a... In order to investigate the physical and mechanical properties of sandstone containing fissures after exposure to high temperatures,fissures with different angles α were prefabricated in the plate sandstone samples,and the processed samples were then heated at 5 different temperatures.Indoor uniaxial compression was conducted to analyze the change rules of physical properties of sandstone after exposure to high temperature,and the deformation,strength and failure characteristics of sandstone containing fissures.The results show that,with increasing temperature,the volume of sandstone increases gradually while the quality and density decrease gradually,and the color of sandstone remains basically unchanged while the brightness increases markedly when the temperature is higher than 585 ℃;the peak strength of sandstone containing fissures first decreases then increases when the temperature is between 25℃and 400℃.The peak strain of sandstone containing fissures increases gradually while the average modulus decreases gradually with increasing temperature,and the mechanical properties of sandstone show obvious deterioration after 400 ℃.The peak strain of sandstone containing fissures increases gradually while the average modulus decreases gradually with increasing temperature;with increasing angle αof the fissure,the evolution characteristics of the macro-mechanical parameters of sandstone are closely related to the their own mechanical properties.When the temperature is 800 ℃,the correlation between the peak strength and average modulus of sandstone and the angle α of the fissure is obviously weakened.The failure modes of sandstone containing fissures after high temperature exposure are of three different kinds including:tensile crack failure,tensile and shear cracks mixed failure,and shear crack failure.Tensile and shear crack mixed failure occur mainly at low temperatures and small angles;tensile crack failure occurs at high temperatures and large angles. 展开更多
关键词 High temperature Sandstone containing fissure Strength characteristics Deformation characteristics Evolution law
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充填体和围岩-充填体界面剪切特性对比试验研究 被引量:8
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作者 修占国 王述红 +2 位作者 王斐笠 任凤玉 NGUYEN Vantuan 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2021年第8期1628-1642,共15页
拱效应理论模型在剪切力学参数(黏聚力c和内摩擦角j)的选取上采用了等效原则。为了区分剪切参数的选取对拱效应理论模型的影响,首先,采用三轴测试方法,开展常侧向约束条件下围岩-充填体界面的三轴剪切和充填体的三轴压缩试验。基于Mohr-... 拱效应理论模型在剪切力学参数(黏聚力c和内摩擦角j)的选取上采用了等效原则。为了区分剪切参数的选取对拱效应理论模型的影响,首先,采用三轴测试方法,开展常侧向约束条件下围岩-充填体界面的三轴剪切和充填体的三轴压缩试验。基于Mohr-Coulomb强度理论框架,对不同养护时间下充填体和围岩-充填体界面的剪切力学参数进行对比和量化分析。然后,利用电子扫描电镜(SEM)和热差异分析(TG/DTG)的分析手段,充分解释充填体和围岩-充填体界面剪切参数的差异性。最后,依据试验测试结果,对Terzaghi理论模型的工程应用进行讨论。研究表明,随侧向约束的增加,围岩-充填体界面的剪切位移-剪切应力曲线呈现出多峰值现象,且充填体的轴向应变-偏应力曲线呈现出明显的弹性强化阶段。充填体的剪切力学参数(c_(b),φ_(b))要明显大于相应围岩-充填体界面的参数(c_(i),φ_(i))。两者的黏聚力比值(c_(b)/c_(i))相差了2.26~2.67倍,内摩擦角比值(φ_(b)/φ_(i))相差了1.65~2.76倍。且采用围岩-充填体界面的剪切参数(c_(i),φ_(i))进行充填采场竖向应力(σ_(v))的预估能有效地克服Terzaghi理论模型的局限性。研究结论可为充填采场拱效应的预估和数值分析中力学参数的选取提供一定的参考。 展开更多
关键词 采矿工程 膏体充填体 围岩-充填体界面 三轴试验 剪切力学参数 Terzaghi理论模型
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