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Enhanced Strain Beam Formulation Resolving Several Issues of Displacement-Based Elements for Nonlinear Analysis

机译:增强应变梁公式化解决了非线性分析中基于位移的元素的若干问题

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This paper presents an enhanced-strain beam formulation for the analysis of frame structures with material and geometric nonlinearities. The focus is on slender members, for which the Euler-Bernoulli beam theory can be adopted. The generalized strain enhancement vector, which only includes an axial strain component, is introduced in an element for which the sectional response is evaluated at the two end points. When combined with a modified integration rule, the enhanced-strain formulation resolves inherent problems of displacement-based elements caused by the weak satisfaction of equilibrium, while ensuring a simpler and more robust element state determination algorithm compared to those of mixed and force-based elements. The accuracy of the proposed formulation is validated through a series of analyses.
机译:本文提出了一种用于分析具有材料和几何非线性的框架结构的增强应变梁公式。重点是细长成员,对此可以采用Euler-Bernoulli梁理论。仅包含轴向应变分量的广义应变增强矢量被引入到一个单元中,在该单元中评估了两个端点的截面响应。当与修改的积分规则结合使用时,增强应变公式解决了由平衡满足不力导致的基于位移的单元固有的问题,同时确保了与基于混合和基于力的单元相比,更简单,更可靠的单元状态确定算法。通过一系列分析验证了所提出配方的准确性。

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