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首页> 外文期刊>International Journal of Solids and Structures >MICROMECHANICAL MODELLING OF TENSILE RESPONSE OF ELASTIC-BRITTLE MATERIALS
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MICROMECHANICAL MODELLING OF TENSILE RESPONSE OF ELASTIC-BRITTLE MATERIALS

机译:弹性-脆性材料拉伸响应的微观力学模拟

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摘要

The stress-strain relation of elastic-brittle materials like concrete under tensile loading includes some of the stages of linear elasticity, pre-peak non-linear hardening, rapid stress drop and tension softening. These stages, which correspond to different mechanisms of damage, are modelled through micromechanical analyses. The behaviours of rapid stress drop and tension softening are the results of localization of damage and deformation. Based on the damage model of domain of microcrack growth proposed by Feng and Yu [Acta Mech. Sinica 9, 251-260 (1993)], this paper gives the complete constitutive relation including the four stages of an elastic-brittle material subjected to uniaxial and triaxial tensile loads. As an illustration, the theoretical stress-strain curve in uniaxial tension is compared with an experimental result. [References: 21]
机译:弹性脆性材料(如混凝土)在拉伸载荷下的应力应变关系包括线性弹性,峰前非线性硬化,快速应力下降和拉伸软化的一些阶段。这些阶段对应于不同的损坏机制,通过微机械分析来建模。应力快速下降和张力软化的行为是损伤和变形局部化的结果。基于冯和余提出的微裂纹生长域的损伤模型[Acta Mech。 Sinica 9,251-260(1993)],本文给出了完整的本构关系,包括弹性脆性材料在单轴和三轴拉伸载荷作用下的四个阶段。作为说明,将单轴拉伸中的理论应力-应变曲线与实验结果进行了比较。 [参考:21]

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