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香港花岗岩单轴压缩时的操作演化
引用本文:俞峰,谭国焕,李启光. 香港花岗岩单轴压缩时的操作演化[J]. 岩石力学与工程学报, 2003, 22(12): 2019-2027
作者姓名:俞峰  谭国焕  李启光
作者单位:RockEngineeringResearchCenter,DepartmentofCivilEngineering,TheUniversityofHongKong,HongKong,China
摘    要:An investigation is reported on the characteristics of progressive failure of Hong Kong granite. Uniaxial compression tests are performed on a number of Hong Kong granite specimens with the MTS 815.04 testing machine.Acoustic emission signals are recorded to trace the evolution of damages. Parametric studies on the effect of grain size are attempted. The results show that the increase in grain size will reduce the brittleness during failure. In addition, discussion is extended to the grain size effect on the stress thresholds of crack closure, crack initiation and crack damage. The RFPA^2D code is also used to observe the failure characteristics of brittle rocks such as granite. Microscopic tensile failure is dominant in the ultimate failure of all the uniaxially compressed models. The crack initiation threshold is also determined by the numerical approach. The failure of coarse-grained models seems more ductile.

关 键 词:香港 花岗岩 单轴 压缩损伤 演化

DAMAGE EVOLUTION OF UNIAXIALLY COMPRESSED HONG KONG GRANITE
Yu F,Tham L G,Lee P K K. DAMAGE EVOLUTION OF UNIAXIALLY COMPRESSED HONG KONG GRANITE[J]. Chinese Journal of Rock Mechanics and Engineering, 2003, 22(12): 2019-2027
Authors:Yu F  Tham L G  Lee P K K
Abstract:An investigation is reported on the characteristics of progressive failure of Hong Kong granite. Uniaxial compression tests are performed on a number of Hong Kong granite specimens with the MTS 815.04 testing machine. Acoustic emission signals are recorded to trace the evolution of damages. Parametric studies on the effect of grain size are attempted. The results show that the increase in grain size will reduce the brittleness during failure. In addition,discussion is extended to the grain size effect on the stress thresholds of crack closure,crack initiation and crack damage. The RFPA2D code is also used to observe the failure characteristics of brittle rocks such as granite. Microscopic tensile failure is dominant in the ultimate failure of all the uniaxially compressed models. The crack initiation threshold is also determined by the numerical approach. The failure of coarse-grained models seems more ductile.
Keywords:rock mechanics  damage degree  Hong Kong granite  numerical simulation
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