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Cyclic Shearing Deformation Behavior of Saturated Clays 被引量:2
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作者 QI Jianfeng LUAN Maotian +2 位作者 FENG Xiuli MA Tailei NIE Ying 《Journal of Ocean University of China》 SCIE CAS 2007年第4期413-420,共8页
The apparatus for static and dynamic universal triaxial and torsional shear soil testing is employed to perform stress-controlled cyclic single-direction torsional shear tests and two-direction coupled shear tests und... The apparatus for static and dynamic universal triaxial and torsional shear soil testing is employed to perform stress-controlled cyclic single-direction torsional shear tests and two-direction coupled shear tests under unconsolidated-undrained conditions. Through a series of tests on saturated clay, the effects of initial shear stress and stress reversal on the clay’s strain-stress behavior are examined, and the behavior of pore water pressure is studied. The experimental results indicate that the patterns of stress-strain relations are distinctly influenced by the initial shear stress in the cyclic single-direction shear tests. When the initial shear stress is large and no stress reversal occurs, the predominant deformation behavior is characterized by an accumulative effect. When the initial shear stress is zero and symmetrical cyclic stress occurs, the predominant deformation behavior is characterized by a cyclic effect. The pore water pressure fluctuates around the confining pressure with the increase of cycle number. It seems that the fluctuating amplitude increases with the increase of the cyclic stress. But a buildup of pore water pressure does not occur. The de- formations of clay samples under the complex initial and the cyclic coupled stress conditions include the normal deviatoric deforma- tion and horizontal shear deformation, the average deformation and cyclic deformation. A general strain failure criterion taking into account these deformations is recommended and is proved more stable and suitable compared to the strain failure criteria currently used. 展开更多
关键词 cyclic stress complex stress state saturated clay stress-strain relations failure criterion
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循环荷载作用下结构性软粘土的变形和强度特性 被引量:81
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作者 陈颖平 黄博 陈云敏 《岩土工程学报》 EI CAS CSCD 北大核心 2005年第9期1065-1071,共7页
采用萧山原状和重塑软粘土在不同压力下固结后进行动力试验,探讨结构性软粘土在循环荷载作用下,合适的动应变破坏标准。文中比较了按本文提出的破坏标准与破坏应变标准取为5%和10%时的动强度差异,结果表明,在破坏振次较小时,本文提出的... 采用萧山原状和重塑软粘土在不同压力下固结后进行动力试验,探讨结构性软粘土在循环荷载作用下,合适的动应变破坏标准。文中比较了按本文提出的破坏标准与破坏应变标准取为5%和10%时的动强度差异,结果表明,在破坏振次较小时,本文提出的应变破坏标准更为合理;随着振次的增大,不同应变标准下的动强度差异性逐渐减小并趋于同一个稳定值——土体的最小动强度。固结压力对结构性软土动强度的影响较大,当固结压力小于土体结构屈服应力时,原状土动强度明显高于重塑土;而当固结压力超过土体结构屈服应力时,两者的动强度基本趋于一致。 展开更多
关键词 循环荷载 软粘土 结构性 动应变 应变破坏标准 动强度
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循环应力作用下饱和软黏土的不固结不排水强度与破坏准则 被引量:12
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作者 王建华 曲延大 《水利学报》 EI CSCD 北大核心 2011年第6期672-677,共6页
通过循环三轴与循环扭剪试验,研究了饱和软黏土不固结不排水循环强度的变化。结果表明:当循环破坏次数给定后,饱和软黏土的不固结不排水循环强度取决于土单元受到的静剪(偏)应力,与其受到的围压无关;当作用在土单元上的静剪(偏)应力比从... 通过循环三轴与循环扭剪试验,研究了饱和软黏土不固结不排水循环强度的变化。结果表明:当循环破坏次数给定后,饱和软黏土的不固结不排水循环强度取决于土单元受到的静剪(偏)应力,与其受到的围压无关;当作用在土单元上的静剪(偏)应力比从0.3变化至0.6时,饱和软黏土循环强度也逐渐增大。进一步,通过分析循环扭剪试验确定的循环剪切强度与循环三轴试验确定的循环压缩强度之间的关系,阐明了循环应力作用下饱和软黏土不固结不排水强度满足Mises破坏准则。依据本文研究结论,可以通过特定试验建立描述一般应力状态饱和软黏土单元不固结不排水循环强度的变化关系。 展开更多
关键词 软土动力特性 软土循环破坏准则 软土动强度 循环扭剪试验 循环三轴试验
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