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New failure criterion models for concrete under multiaxial stress in compression

机译:新的混凝土多轴应力破坏准则模型

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Biaxial and triaxial compression tests were performed on 100 x 100 x100 mm cubic specimens of concrete under different stress loading rates. All the tests were performed using a true triaxial testing machine. The analysis of the data revealed that the intermediate principal stress, hydrostatic stress and shear stress are the main factors influencing the failure criterion for concrete under multiaxial stress. Based on the twin shear strength theory, three failure criterion models were developed. The five parameter model A considers the shear strength as the main factor, the five-parameter model B considers hydrostatic strength as the main factor, and the six-parameter model considers both the shear strength and hydrostatic strength. The parameters for these failure criterion models have clear physical significance and form the failure criterion in a theoretical analysis. Models A and B apply to different stress states and show similar results. The six-parameter model can apply to most stress states, but the computed results depend on the boundary conditions. This convenient model can also be extended for nonlinear analyses of concrete under multiaxial stress in compression. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在不同应力加载速率下,对100 x 100 x100 mm的混凝土立方试样进行了双轴和三轴压缩试验。所有测试均使用真正的三轴测试机进行。数据分析表明,中间主应力,静水应力和剪应力是影响混凝土多轴应力破坏准则的主要因素。基于双剪切强度理论,建立了三种破坏准则模型。五参数模型A以剪切强度为主要因素,五参数模型B以静水压力为主要因素,六参数模型同时考虑剪切强度和静水强度。这些失效准则模型的参数具有明确的物理意义,并在理论分析中形成了失效准则。模型A和B适用于不同的应力状态并显示出相似的结果。六参数模型可以应用于大多数应力状态,但是计算结果取决于边界条件。这个方便的模型也可以扩展到压缩中多轴应力下混凝土的非线性分析。 (C)2017 Elsevier Ltd.保留所有权利。

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