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The Three-Stage Model Based on Strain Strength Distribution for the Tensile Failure Process of Rock and Concrete Materials

The Three-Stage Model Based on Strain Strength Distribution for the Tensile Failure Process of Rock and Concrete Materials
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摘要 A three-stage model is introduced to describe the tensile failure process of rock and concrete materials.Failure of the material is defined to contain three stages in the model,which include elastic deformation stage,body damage stage and localization damage stage.The failure mode change from uniform body damage to localization damage is expressed.The heterogeneity of material is described with strain strength distribution.The fracture factor and intact factor,defined as the distribution function of strain strength,are used to express the fracture state in the failure process.And the distributive parameters can be determined through the experimental stress-strain curve. A three-stage model is introduced to describe the tensile failure process of rock and concrete materials.Failure of the material is defined to contain three stages in the model,which include elastic deformation stage,body damage stage and localization damage stage.The failure mode change from uniform body damage to localization damage is expressed.The heterogeneity of material is described with strain strength distribution.The fracture factor and intact factor,defined as the distribution function of strain strength,are used to express the fracture state in the failure process.And the distributive parameters can be determined through the experimental stress-strain curve.
机构地区 Institute of Mechanics
出处 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2016年第5期514-526,共13页 固体力学学报(英文版)
基金 Project supported by the National Program on Key Basic Research Project of China(973 Program,No.2015CB250903) CAS Strategic Priority Research Program(B)(No.XDB10030303)
关键词 fractured heterogeneity rock tensile Strain localization intact granite softening macroscopic fractured heterogeneity rock tensile Strain localization intact granite softening macroscopic
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