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Dynamic analysis of fault rockburst based on gradient-dependent plasticity and energy criterion
作者姓名:XuebinWang  XiaobinYang  ZhihuiZhang  YishanPan
作者单位:[1]DepartmentofMechanicsandEngineeringSciences,LiaoningTechnicalUniversity,Fuxin123000,China [2]DepartmentofEngineeringMechanics,TsinghuaUniversity,Beijing100084,China
基金项目:国家自然科学基金,Liaoning Technical University
摘    要:Fault rockburst is treated as a strain localization problem under dynamic loading condition considering strain gradient and strain rate. As a kind of dynamic fracture phenomena, rockburst has characteristics of strain localization, which is considered as a one-dimensional shear problem subjected to normal compressive stress and tangential shear stress. The constitutive relation of rock material is bilinear (elastic and strain softening) and sensitive to shear strain rate. The solutions proposed based on gradientdependent plasticity show that intense plastic strain is concentrated in fault band and the thickness of the band depends on the characteristic length of rock material. The post-peak stiffness of the fault band was determined according to the constitutive parameters of rock material and shear strain rate. Fault band undergoing strain softening and elastic rock mass outside the band constitute a system and the instability criterion of the system was proposed based on energy theory. The criterion depends on the constitutive relation of rock material, the structural size and the strain rate. The static result regardless of the strain rate is the special case of the present analytical solution. High strain rate can lead to instability of the system.

关 键 词:岩爆  剪切应力  塑性  能量标准  自然灾害  矿山开采

Dynamic analysis of fault rockburst based on gradient-dependent plasticity and energy criterion
XuebinWang XiaobinYang ZhihuiZhang YishanPan.Dynamic analysis of fault rockburst based on gradient-dependent plasticity and energy criterion[J].Journal of University of Science and Technology Beijing,2004,11(1):5-9.
Authors:Xuebin Wang  Xiaobin Yang  Zhihui Zhang  Yishan Pan
Abstract:Fault rockburst is treated as a strain localization problem under dynamic loading condition considering strain gradient and strain rate. As a kind of dynamic fracture phenomena, rockburst has characteristics of strain localization, which is considered as a one-dimensional shear problem subjected to normal compressive stress and tangential shear stress. The constitutive relation of rock material is bilinear (elastic and strain softening) and sensitive to shear strain rate. The solutions proposed based on gradientdependent plasticity show that intense plastic strain is concentrated in fault band and the thickness of the band depends on the characteristic length of rock material. The post-peak stiffness of the fault band was determined according to the constitutive parameters of rock material and shear strain rate. Fault band undergoing strain softening and elastic rock mass outside the band constitute a system and the instability criterion of the system was proposed based on energy theory. The criterion depends on the constitutive relation of rock material, the structural size and the strain rate. The static result regardless of the strain rate is the special case of the present analytical solution. High strain rate can lead to instability of the system.
Keywords:strain localization  rockburst  plastic strain gradient  criterion of instability  strain rate  fault band  strain softening
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