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Bounding surface plasticity model for stress-strain and grain-crushing behaviors of rockfill materials 被引量:6

Bounding surface plasticity model for stress-strain and grain-crushing behaviors of rockfill materials
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摘要 Crushing of grains can greatly influence the strength,dilatancy,and stress-strain relationship of rockfill materials.The critical state line(CSL)in the void ratio versus mean effective stress plane was extended to the breakage critical state plane(BCSP).A state void-ratio-pressure index that incorporated the effect of grain crushing was proposed according to the BCSP.Rowe’s stress-dilatancy equation was modified by adding the breakage voidratio-pressure index,which was also incorporated into the formulations of the bounding stress ratio and plastic modulus.A BCSP-based bounding surface plasticity model was proposed to describe the state-dependent stressstrain behaviors and the evolution of grain crushing during shearing process of rockfill materials,and was shown to sufficiently capture the breakage phenomenon. Crushing of grains can greatly influence the strength,dilatancy,and stress-strain relationship of rockfill materials.The critical state line(CSL) in the void ratio versus mean effective stress plane was extended to the breakage critical state plane(BCSP).A state void-ratio-pressure index that incorporated the effect of grain crushing was proposed according to the BCSP.Rowe’s stress-dilatancy equation was modified by adding the breakage voidratio-pressure index,which was also incorporated into the formulations of the bounding stress ratio and plastic modulus.A BCSP-based bounding surface plasticity model was proposed to describe the state-dependent stressstrain behaviors and the evolution of grain crushing during shearing process of rockfill materials,and was shown to sufficiently capture the breakage phenomenon.
出处 《Geoscience Frontiers》 SCIE CAS CSCD 2020年第2期495-510,共16页 地学前缘(英文版)
基金 financial support from the 111 Project (Grant No. B13024) the National Science Foundation of China (Grant Nos. 51509024, 51678094 and 51578096) the Fundamental Research Funds for the Central Universities (Grant No. 106112017CDJQJ208848) the Special Financial Grant from the China Postdoctoral Science Foundation (Grant No. 2017T100681)
关键词 Constitutive model Grain crushing Critical state DILATANCY STRENGTH State parameter Constitutive model Grain crushing Critical state Dilatancy Strength State parameter
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