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Mechanism on progressive failure of a faulted rock slope due to slip-weakening
作者姓名:ZHANG Junfeng  XU Yongjun  QI Tao & LI Zhengguo Institute of Mechanics  Chinese Academy of Sciences  Beijing  China
作者单位:ZHANG Junfeng,XU Yongjun,QI Tao & LI Zhengguo Institute of Mechanics,Chinese Academy of Sciences,Beijing 100080,China
基金项目:中国科学院资助项目,the Special Funds for the Major State Basic Research Project,中国科学院知识创新工程项目,the Special Research Project for Landslide and Bank-collapse in The Three Gorges Reservoir Areas
摘    要:1 Introduction The damage or failure of faulted rock slope is a quite difficult problem in geotechni- cal engineering, and attention has been drawn from researchers for a long time. Apart from the toppling damage of steep slopes, most of the failure pattern of faulted rockslopes is shear-typed. The failure process of such a slope includes: initiation and devel- opment of a single micro-crack, breakthrough of two or more cracks, formation of fail- ure zones, and even shear damage in large scale…


Mechanism on progressive failure of a faulted rock slope due to slip-weakening
ZHANG Junfeng,XU Yongjun,QI Tao & LI Zhengguo Institute of Mechanics,Chinese Academy of Sciences,Beijing ,China.Mechanism on progressive failure of a faulted rock slope due to slip-weakening[J].Science in China(Technological Sciences),2005,48(Z1).
Authors:ZHANG Junfeng  XU Yongjun  QI Tao  LI Zhengguo
Affiliation:Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China
Abstract:Slip-weakening is one of the characteristics of geological materials under certain loadings. Non-uniform rock structure may exist in the vicinity of the slip surface for a rock slope. Some portion of the slip surface may be penetrated but the other not. For the latter case, the crack or the fault surface will undergo shear deformation before it becomes a successive surface under a certain loading. As the slipped portion advances, slip-weakening occurs over a distance behind the crack tip. In the weakening zone, the shear strength will decrease from its peak value to residual friction level. The stress will redistribute along the surface of crack and in the weakening zone. Thus the changed local stress concentration leads the crack to extend and the ratio of penetration of the slip surface to increase. From the view of large-scale for the whole slip surface, the shear strength will decrease due to the damage of interior rock structure, and the faulted rock behaves as a softening material. Such a kind of mechanism performs in a large number of practical landslides in the zones experienced strong earthquakes. It should be noted that the mechanism mentioned above is different from that of the breakage of structural clay, in which the geological material is regarded as a medium containing structural lumps and structural bands. In this paper, the softening behavior of a faulted rock should be regarded as a comprehensive result of the whole complicated process including slip-weakening, redistribution of stress, extension of crack tip, and the penetration of the slip surface. This process is accompanied by progressive failure and abrupt structural damage. The size of slip-weakening zone is related to the undergoing strain. Once the relative slide is initiated (local or integrated), the effect of slip-weakening will behave in a certain length behind the crack tip until the formation of the whole slip surface.
Keywords:faulted rock slope  slip-weakening  progressive failure  
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