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胶凝堆石料动本构关系及动模量衰减模型
引用本文:蔡〓新,宋小波,明〓宇,杨〓杰,傅〓华.胶凝堆石料动本构关系及动模量衰减模型[J].水电能源科学,2013,31(12):94-97.
作者姓名:蔡〓新  宋小波  明〓宇  杨〓杰  傅〓华
作者单位:河海大学 力学与材料学院, 江苏 南京 210098; 河海大学 水利水电学院, 江苏 南京 210098;河海大学 力学与材料学院, 江苏 南京 210098;河海大学 水利水电学院, 江苏 南京 210098;河海大学 水利水电学院, 江苏 南京 210098;南京水利科学研究院, 江苏 南京 210029
基金项目:国家自然科学基金资助项目(51179061);高等学校博士学科点专项科研基金资助项目(20100094110014);“十二五”国家科技支撑计划基金资助项目(2012BAD10B02)
摘    要:基于动三轴试验,研究了不同围压、不同胶凝含量下胶凝堆石料的动本构关系及动模量衰减规律。结果表明,胶凝堆石料动本构关系仍可用Kondner R L双曲线模型进行描述,围压、胶凝含量对动本构关系均有影响,但围压对其影响较大;胶凝堆石料动模量随动应变的增大而非线性减小,且具有明显的应变软化特征,同等条件下动模量随围压和胶凝含量的增大而增大。根据动模量衰减曲线,提出了动模量衰减模型,通过线性回归分析,得到了胶凝堆石料动模量衰减模型参数表达式,为胶凝堆石坝的动力分析提供了参考。

关 键 词:动三轴试验    胶凝堆石料    本构关系    动模量    衰减模型

Dynamic Constitutive Relation and Dynamic Modulus Attenuation Model of CSG Materials
CAI Xin,SONG Xiaobo,MING Yu,YANG Jie and FU Hua.Dynamic Constitutive Relation and Dynamic Modulus Attenuation Model of CSG Materials[J].International Journal Hydroelectric Energy,2013,31(12):94-97.
Authors:CAI Xin  SONG Xiaobo  MING Yu  YANG Jie and FU Hua
Abstract:Based on the dynamic triaxial test, the dynamic constitutive relation and dynamic modulus attenuation rule with different cementitious content and different ambient pressure was studied. The results showed that the dynamic constitutive relationship of CSG materials was still available for Kondner R L hyperbola model; the cementitious content and ambient pressure had impact on the dynamic constitutive relation; along with the increase of dynamic strain, the dynamic modulus nonlinear decreased, and it had obvious characteristics of strain softening; under the same conditions, the dynamic modulus increased with the increase of ambient pressure and cementitious content. According to the dynamic modulus attenuation curve, the dynamic modulus attenuation model was proposed. Based on the linear regression analysis, the dynamic modulus attenuation model parameters of CSG materials was obtained, which provided reference for dynamic analysis of CSG materials.
Keywords:dynamic triaxial test  CSG materials  constitutive relation  dynamic modulus  attenuation model
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