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首页> 外文期刊>Computers & Structures >Coupled model for the non-linear analysis of anisolropic sections subjected to general 3D loading. Part 1: Theoretical formulation
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Coupled model for the non-linear analysis of anisolropic sections subjected to general 3D loading. Part 1: Theoretical formulation

机译:进行3D加载的非索力剖面非线性分析的耦合模型。第1部分:理论表述

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摘要

A numerical model for the coupled analysis of arbitrary shaped cross sections made of heterogeneous-anisotropic materials under 3D combined loading is formulated. The theory is derived entirely from equilibrium considerations and based on the superposition of the 3D section's distortion and the traditional plane section hypothesis. 3D stresses and strains fields are obtained as well as a section stiffness matrix reflecting coupling effects between normal and tangential forces due to material anisotropy. Traditional generalized strains and stresses are maintained as input and output variables. The proposed model is suitable as a constitutive law for frame elements in the analysis of complete structures.
机译:建立了在3D组合载荷下耦合分析由异质各向异性材料制成的任意形状截面的数值模型。该理论完全来自平衡考虑,并基于3D截面变形和传统平面截面假设的叠加。获得3D应力和应变场,以及反映刚度和切向力之间由于材料各向异性而产生的耦合效应的截面刚度矩阵。传统的广义应变和应力保持为输入和输出变量。所提出的模型适合作为框架元素在完整结构分析中的本构定律。

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