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Anisotropic surface roughness and shear behaviors of rough-walled plaster joints under constant normal load and constant normal stiffness conditions 被引量:7
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作者 Richeng Liu Sha Lou +2 位作者 Xiaojing Li Guansheng Han Yujing Jiang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2020年第2期338-352,共15页
In this context,we experimentally studied the anisotropic mechanical behaviors of rough-walled plaster joints using a servo-controlled direct shear apparatus under both constant normal load(CNL)and constant normal sti... In this context,we experimentally studied the anisotropic mechanical behaviors of rough-walled plaster joints using a servo-controlled direct shear apparatus under both constant normal load(CNL)and constant normal stiffness(CNS)conditions.The shear-induced variations in the normal displacement,shear stress,normal stress and sheared-off asperity mass are analyzed and correlated with the inclination angle of the critical waviness of joint surfaces.The results show that CNS condition gives rise to a smaller normal displacement due to the larger normal stress during shearing,compared with CNL condition.Under CNL conditions,there is one peak shear stress during shearing,whereas there are no peak shear stress for some cases and two peaks for other cases under CNS conditions depending on the geometry of joint surfaces.The inclination angle of the critical waviness has been verified to be capable of describing the joint surface roughness and anisotropy.The joint surface is more significantly damaged under CNS conditions than that under CNL conditions.With increment of the inclination angle of the critical waviness,both the normal displaceme nt and shea red-off asperity mass increase,following power law functions;yet the coefficient of deternination under CNL conditions is larger than that under CNS conditions.This is because the CNS condition significantly decreases the inclination angle of the critical waviness during shearing due to the larger degree of asperity degradation. 展开更多
关键词 Joint CONSTANT NORMAL load(CNL) CONSTANT NORMAL stiffness(cns) Shear anisotropy Surface ROUGHNESS
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Sliding modes of fault activation under constant normal stiffness conditions 被引量:2
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作者 Chuanqing Zhang Jie Xu +3 位作者 Shengji Jin Guojian Cui Yuhang Guo Lingyu Li 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第5期1213-1225,共13页
Fault activation has been the focus of research community for years.However,the studies of fault activation remain immature,such as the fault activation mode and its major factors under constant normal stiffness(CNS)c... Fault activation has been the focus of research community for years.However,the studies of fault activation remain immature,such as the fault activation mode and its major factors under constant normal stiffness(CNS)conditions associated with large thickness of fault surrounding rock mass.In this study,the rock friction experiments were conducted to understand the fault activation modes under the CNS conditions.Two major parameters,i.e.the initial normal stress and loading rate,were considered and calibrated in the tests.To reveal the response mechanism of fault activation,the local strains near the fault plane were recorded,and the macroscopic stresses and displacements were analyzed.The testing results show that the effect of displacement-controlled loading rate is more pronounced under the CNS conditions than that under constant normal load(CNL)conditions.Both the normal and shear stresses drop suddenly when the stick-slip occurs.The decrease and increase of the normal stress are synchronous with the shear stress in the regular stick-slip scenario,but mismatch with the shear stress during the chaotic stick-slip process.The results are helpful for understanding the fault sliding mode and the prediction and prevention of fault slip. 展开更多
关键词 Fault activation Rock friction mechanics Sliding modes Constant normal stiffness(cns) Displacement-controlled loading rates ROCKBURST
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Laboratory investigation into effect of bolt profiles on shear behaviors of bolt-grout interface under constant normal stiffness (CNS) conditions 被引量:2
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作者 Guojian Cui Chuanqing Zhang +2 位作者 Yibin Pan Liang Deng Hui Zhou 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2020年第6期1234-1248,共15页
Rock bolts have been widely used for stabilizing rock mass in geotechnical engineering.It is acknowledged that the bolt profiles have a sound influence on the support effect of the rock bolting system.Previous studies... Rock bolts have been widely used for stabilizing rock mass in geotechnical engineering.It is acknowledged that the bolt profiles have a sound influence on the support effect of the rock bolting system.Previous studies have proposed some optimal rib parameters(e.g.rib spacing);unfortunately,the interface shear behaviors are generally ignored.Therefore,determination of radial stress and radial displacement on the bolt-grout interface using traditional pull-out tests is not possible.The load-bearing capacity and deformation capacity vary as bolt profiles differ,suggesting that the support effect of the bolting system can be enhanced by optimizing bolt profiles.The aim of this study is to investigate the effects of bolt profiles(with/without ribs,rib spacing,and rib height)on the shear behaviors between the rock bolt and grout material using direct shear tests.Thereby,systematic interfacial shear tests with different bolt profiles were performed under both constant normal load(CNL)and constant normal stiffness(CNS)boundary conditions.The results suggested that rib spacing has a more marked influence on the interface shear behavior than rib height does,in particular at the post-yield stage.The results could facilitate our understanding of bolt-grout interface shear behavior under CNS conditions,and optimize selection of rock bolts under in situ rock conditions. 展开更多
关键词 Bolt profile Constant normal stiffness(cns) Shear test Interface failure characteristics Shear behaviors
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恒定法向刚度边界条件下三维粗糙节理面循环剪切力学特性 被引量:15
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作者 刘日成 尹乾 +3 位作者 杨瀚清 靖洪文 蒋宇静 蔚立元 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2021年第6期1092-1109,共18页
通过开展恒定法向刚度边界条件下三维粗糙节理面循环剪切试验,揭示法向刚度(0~7GPa/m)和循环剪切次数(1~10次)对节理面剪切应力、法向变形、法向应力、剪切应力路径、表面阻力指数、声发射响应和表面磨损特征的影响。试验结果表明:剪切... 通过开展恒定法向刚度边界条件下三维粗糙节理面循环剪切试验,揭示法向刚度(0~7GPa/m)和循环剪切次数(1~10次)对节理面剪切应力、法向变形、法向应力、剪切应力路径、表面阻力指数、声发射响应和表面磨损特征的影响。试验结果表明:剪切应力-剪切位移路径具有典型的刚度依赖特征,当法向刚度较小时,剪切应力在初始峰值之后逐渐减小,呈现应力软化行为;随着法向刚度的增加,法向位移增加幅度逐渐减小,而由剪切引起的剪切应力与法向应力增加幅度均逐渐变大,呈现应力硬化特征。当循环次数=1时,随着法向刚度由3GPa/m增加至7GPa/m,节理面表观黏聚力和表观内摩擦角分别增加了22.40%和26.84%,而表面阻力指数基本保持稳定。随着循环次数的增加,初始剪切应力峰值逐渐降低,且降低幅度逐渐变缓并最终趋于稳定,其中在循环次数从1增加到2时,初始剪切应力峰值降低幅度最大(24.93%~60.91%);循环剪切过程中,由于节理表面凸起被磨损剪断并趋于光滑,剪胀变形及法向应力增加幅度均逐渐降低;当剪切位移较大时,与法向应力相比,剪切应力增加幅度衰减更为敏感,表面阻力指数逐渐增加。累积声发射能量随着循环次数的增加逐渐减小,而随着法向刚度从0.5 GPa/m增加至7 GPa/m,稳定阶段累积声发射能量增加了229.8%,剪切磨损面积占比增加了72.02%~97.11%。 展开更多
关键词 岩石力学 恒定法向刚度 循环剪切 节理面 剪胀变形 声发射 二值化
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A review of shear strength models for rock joints subjected to constant normal stiffness 被引量:12
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作者 Sivanathan Thirukumaran Buddhima Indraratna 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2016年第3期405-414,共10页
The typical shear behaviour of rough joints has been studied under constant normal load/stress (CNL) boundary conditions, but recent studies have shown that this boundary condition may not replicate true practical s... The typical shear behaviour of rough joints has been studied under constant normal load/stress (CNL) boundary conditions, but recent studies have shown that this boundary condition may not replicate true practical situations. Constant normal stiffness (CNS) is more appropriate to describe the stress-strain response of field joints since the CNS boundary condition is more realistic than CNL. The practical implications of CNS are movements of unstable blocks in the roof or walls of an underground excavation, reinforced rock wedges sliding in a rock slope or foundation, and the vertical movement of rock-socketed concrete piles. In this paper, the highlights and limitations of the existing models used to predict the shear strength/behaviour of joints under CNS conditions are discussed in depth. 展开更多
关键词 Rock jointsShear strengthDilationAsperity damageConstant normal stiffness cns
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Effect of bolt inclination angle on shear behavior ofbolted joints under CNL and CNS conditions 被引量:11
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作者 CUI Guo-jian ZHANG Chuan-qing +3 位作者 CHEN Jian-lin YANG Fan-jie ZHOU Hui LU Jing-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第3期937-950,共14页
Rock bolts are widely used in rock engineering projects to improve the shear capacity of the jointed rock mass.The bolt inclination angle with respect to the shear plane has a remarkable influence on the bolting perfo... Rock bolts are widely used in rock engineering projects to improve the shear capacity of the jointed rock mass.The bolt inclination angle with respect to the shear plane has a remarkable influence on the bolting performance.In this study,a new artificial molding method based on 3D scanning and printing technology was first proposed to prepare bolted joints with an inclined bolt.Then,the effects of the bolt inclination angle and boundary conditions on the shear behavior and failure characteristic of bolted joints were addressed by conducting direct shear tests under both CNL and CNS conditions.Results indicated that rock bolt could significantly improve the shear behavior of rock joints,especially in the post-yield deformation region.With the increase of bolt inclination angle,both the maximum shear stress and the maximum friction coefficient increased first and then decreased,while the maximum normal displacement decreased monotonously.Compared with CNL conditions,the maximum shear stress was larger,whereas the maximum normal displacement and friction coefficient were smaller under the CNS conditions.Furthermore,more asperity damage was observed under the CNS conditions due to the increased normal stress on the shear plane. 展开更多
关键词 bolted joints bolt inclination angle constant normal load(CNL)boundary conditions constant normal stiffness(cns)boundary conditions direct shear test asperity damage
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UDEC中Saeb-Amadei节理本构模型的二次开发 被引量:8
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作者 吴月秀 刘泉声 +1 位作者 卢海峰 李金兰 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2012年第A01期3022-3030,共9页
控制岩体水力学特性的节理在常法向应力边界条件和常法向刚度边界条件2种情况下的力学变形行为不同。由于Saeb-Amadei节理模型考虑了节理法向变形对节理剪切变形及剪胀的影响及节理吻合度对结果的影响,且适用于常法向应力边界与常法向... 控制岩体水力学特性的节理在常法向应力边界条件和常法向刚度边界条件2种情况下的力学变形行为不同。由于Saeb-Amadei节理模型考虑了节理法向变形对节理剪切变形及剪胀的影响及节理吻合度对结果的影响,且适用于常法向应力边界与常法向刚度边界。引入Saeb-Amadei节理模型以研究裂隙岩体水力耦合特性。结合UDEC中的User-defined joint constitutive models接口,采用C++语言,编写Saeb-Amadei节理模型的数值嵌入程序Userjsa,进行单裂隙岩体的数值直剪和数值单轴压缩试验,对比计算结果与解析结果表明,计算结果与解析结果有很好的一致性,验证了数值嵌入程序Userjsa的正确性,为裂隙岩体水力耦合计算提供基础。 展开更多
关键词 岩石力学 Saeb-Amadei节理模型 常法向应力边界条件 常法向刚度边界条件 直剪试验 单轴压缩试验
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耦合结构面剪胀的嵌岩桩侧摩阻力分析 被引量:6
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作者 叶观宝 孟明辉 +2 位作者 邢皓枫 刘之葵 何文勇 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2013年第5期909-916,共8页
嵌岩桩桩–岩界面受力剪切机制通常包括滑动剪胀及剪切滑移两部分,滑动剪胀导致桩–岩界面法向应力显著增大。Serrano法计算嵌岩桩侧摩阻力没有考虑桩–岩界面剪胀效应的影响,从而使得其计算结果比现场实测值偏保守。基于常法向刚度(CNS... 嵌岩桩桩–岩界面受力剪切机制通常包括滑动剪胀及剪切滑移两部分,滑动剪胀导致桩–岩界面法向应力显著增大。Serrano法计算嵌岩桩侧摩阻力没有考虑桩–岩界面剪胀效应的影响,从而使得其计算结果比现场实测值偏保守。基于常法向刚度(CNS)条件下结构面剪切力学特性,充分考虑岩性、桩径以及施工等因素对嵌岩桩受力特性的影响,在对既定粗糙度结构面剪胀产生的法向应力增量实现量化分析的基础上,通过耦合结构面剪胀对Serrano法进行修正。计算结果表明,修正的Serrano法计算所得嵌岩桩侧摩阻力明显高于Serrano法,也更接近于现场实测。修正的Serrano法完善嵌岩桩侧摩阻力的理论计算。 展开更多
关键词 桩基础 嵌岩桩 剪胀 桩–岩结构面 常法向刚度 侧摩阻力
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砂岩-混凝土结构面剪切特性试验研究及离散元模拟
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作者 杨凯旋 刘亚楠 +1 位作者 赵衡 赵明华 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第9期165-176,共12页
为从宏、细观角度揭示常法向刚度(Constant Normal Stiffness,CNS)条件下锯齿状砂岩-混凝土结构面剪切机制,首先采用湖南大学自主改造的CNS岩石直剪仪开展3组砂岩-混凝土结构面室内剪切试验.在此基础上,采用刚性墙替代法建立与室内试验... 为从宏、细观角度揭示常法向刚度(Constant Normal Stiffness,CNS)条件下锯齿状砂岩-混凝土结构面剪切机制,首先采用湖南大学自主改造的CNS岩石直剪仪开展3组砂岩-混凝土结构面室内剪切试验.在此基础上,采用刚性墙替代法建立与室内试验相应的离散元数值模型,并引入3个显式运动学方程控制砂岩试样运动轨迹从而实现CNS条件加载,将数值模拟与试验结果对比验证了模型的合理性.随后,开展16个工况的数值剪切试验,通过观察剪切裂纹扩展和力链演化形态,从细观角度揭示结构面破坏模式和荷载传递机制,并从宏观角度分析锯齿几何尺寸(半波长λ、起伏角θ)和加载边界条件(初始法向应力σn0、法向刚度K)对剪切强度和法向膨胀的影响.结果表明:剪切裂纹按照“平稳增加—急剧增加—增幅减小”的发展趋势由结构面区域逐渐向岩石内部扩展,结构面破坏模式随起伏角的增大由滑移磨损向剪断破坏过渡,剪切强度随λ、θ、σn0和K的增加呈指数函数型增加. 展开更多
关键词 直剪试验 砂岩-混凝土结构面 离散元法 常法向刚度
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节理面强度弱化与强化行为的模拟 被引量:5
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作者 王水林 郭明伟 +2 位作者 孙冠华 柯长仁 李泽栋 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2018年第12期2742-2750,共9页
在岩石节理剪切试验过程中,依据节理面法向方向的约束形式可划分为常法向载荷作用、常法向刚度约束和常法向位移约束。常法向刚度约束下的剪应力-位移曲线呈现复杂的剪切行为。针对常法向刚度约束,基于将应变软化过程转化为-系列应力跌... 在岩石节理剪切试验过程中,依据节理面法向方向的约束形式可划分为常法向载荷作用、常法向刚度约束和常法向位移约束。常法向刚度约束下的剪应力-位移曲线呈现复杂的剪切行为。针对常法向刚度约束,基于将应变软化过程转化为-系列应力跌落与塑性流动过程的方法,将其拓展至可以同时模拟强度软化和强度硬化行为,给出了相应的求解表示式。就节理面在不同法向刚度约束条件下的剪切过程进行了模拟分析。在法向刚度较小时,节理剪切过程呈现强度软化行为;随着法向刚度增加,节理剪切过程转变为强度硬化。剪应力-切向位移、法向位移-切向位移和法向应力-切向位移等曲线的模拟结果与已有的试验结果基本一致,说明提出的方法是可靠的。进一步对不同的初始法向应力与法向刚度组合形成的约束进行了模拟,分析了相应的节理面剪切行为。 展开更多
关键词 岩石力学 岩石节理面 常法向刚度 强度软化 强度硬化
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岩石节理在固定法向压力刚度条件下的剪切理论研究 被引量:1
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作者 史玲 蔡美峰 《岩土力学》 EI CAS CSCD 北大核心 2012年第3期739-744,共6页
节理在固定法向压力刚度(CNS)条件下的剪切过程比较复杂,剪切中由于剪胀的存在使得法向压力增大,而法向压力的增加又限制了剪胀的发生。根据CNS剪切过程中某一瞬时状态下法向压应力大小,以节理在该法向压应力下法向剪胀位移与剪切位移... 节理在固定法向压力刚度(CNS)条件下的剪切过程比较复杂,剪切中由于剪胀的存在使得法向压力增大,而法向压力的增加又限制了剪胀的发生。根据CNS剪切过程中某一瞬时状态下法向压应力大小,以节理在该法向压应力下法向剪胀位移与剪切位移的关系为基础,建立一个楔形物理模型。通过循环迭代求得CNS剪切过程中每一步的法向压应力值,进而得到整个过程的剪切应力值。通过该模型,讨论了节理各参数对CNS剪切过程的影响,结果表明,其剪切应力值受法向压应力刚度与节理法向变形参数共同协调控制(包括单轴压缩变形及剪胀角的磨损),节理在剪切过程中越不易发生压缩变形,其剪切应力值越大。 展开更多
关键词 岩石节理 固定法向刚度剪切条件 理论模型
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