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Experimental and Modelling Investigations of the Coupled Elastoplastic Damage of a Quasi-brittle Rock

机译:准脆性岩石耦合弹塑性损伤的实验和建模研究

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AbstractTriaxial compression tests are conducted on a quasi-brittle rock, limestone. The analyses show that elastoplastic deformation is coupled with damage. Based on the experimental investigation, a coupled elastoplastic damage model is developed within the framework of irreversible thermodynamics. The coupling effects between the plastic and damage dissipations are described by introducing an isotropic damage variable into the elastic stiffness and yield criterion. The novelty of the model is in the description of the thermodynamic force associated with damage, which is formulated as a state function of both elastic and plastic strain energies. The latter gives a full consideration on the comprehensive effects of plastic strain and stress changing processes in rock material on the development of damage. The damage criterion and potential are constructed to determine the onset and evolution of damage variable. The return mapping algorithms of the coupled model are deduced for three different inelastic corrections. Comparisons between test data and numerical simulations show that the coupled elastoplastic damage model is capable of describing the main mechanical behaviours of the quasi-brittle rock.]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”OutputMedium =“全部”> <标题>抽象 三轴压缩测试在准脆性岩石上进行了三轴压缩测试,石灰石。分析表明,弹性变形与损伤相结合。基于实验研究,在不可逆热力学的框架内开发了耦合的弹性塑性损伤模型。通过将各向同性损伤变量引入弹性刚度和屈服标准来描述塑料和损耗之间的耦合效应。该模型的新颖性在于与损坏相关的热力学力的描述,其配制成弹性和塑性应变能量的状态函数。后者充分考虑了塑料应变和应力变化过程在岩石材料中造成损伤的综合影响。构建损伤标准和潜力以确定损伤变量的起始和演变。推导出耦合模型的返回映射算法,用于三种不同的非弹性校正。测试数据与数值模拟之间的比较表明,耦合的弹塑性损伤模型能够描述准脆性岩石的主要机械行为。 ]]>

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