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Numerical analysis of strain localization for transversely isotropic model with non-coaxial flow rule

机译:非同轴流量规则横向各向同性模型应变定位的数值分析

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To analyse the strain localization behavior of geomaterials, the forward Euler schemes and the tangent modulus matrix are formulated based on the transversely isotropic yield criterion with non-coaxial flow rule developed by Lade, the program code is implemented based on the user subroutine (UMAT) of ABAQUS. The influence of the material principal direction on the strain localization and the bearing capacity of the structure are investigated and analyzed. Numerical results show the validity and performance of the proposed model in simulating the strain localization behavior of geostructures.
机译:为了分析地质材料的应变定位行为,基于由LADE开发的非同轴流量规则的横向各向同性屈服标准配制了前向欧拉方案和切线模数矩阵,基于用户子程序(UMAT)来实现程序代码阿布松。研究了材料主体方向对应变定位的影响和结构的承载能力。数值结果表明了模拟地质结构的应变定位行为的提出模型的有效性和性能。

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