Direct plastic analysis of steel structures by flexibility-based element with initial imperfection

Yao-Peng Liu, G. Shu, Siu-Lai Chan
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Abstract

Second-order direct analysis has been used in some regions for reliable analysis and design of steel structures. Currently, the stiffness-based element is widely used with accuracy improved by enforcing equilibrium along mid-span or “stations” along the member length in order to achieve equilibrium which is not guaranteed along an element. In this paper, a flexibility-based beam-column element considering member imperfection based on Hellinger-Reissner functional is developed and used for practical second-order direct analysis. This new element is a flexibility-based element with member initial bowing at the element level for direct analysis of three-dimensional frame analysis whereas previous flexibility-based elements assumed perfectly straight geometry for the element. The fiber plastic hinge approach is adopted to account for the distributed plasticity of a section. The new flexibility-based element performs excellently for modeling of members under high stress with material yielded as the conventional stiffness-based element has less accuracy when few elements are used in modeling a plastic member. This will significantly enhance accuracy and computational efficiency for direct plastic analysis which can then be more widely used in practical design. Several examples are employed to validate the accuracy and efficiency of the proposed element along this line of thought.
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具有初始缺陷的基于柔度单元的钢结构直接塑性分析
二阶直接分析已在一些地区用于钢结构的可靠分析和设计。目前,基于刚度的单元被广泛使用,通过沿跨中或沿构件长度施加平衡来提高精度,以达到沿单元不能保证的平衡。本文提出了一种基于Hellinger-Reissner泛函的考虑构件缺陷的基于柔度的梁柱单元,并将其应用于实际的二阶直接分析。这种新单元是一种基于柔度的单元,构件在单元级初始弯曲,用于三维框架的直接分析,而以前的基于柔度的单元则假设该单元的几何形状完全是直线的。采用纤维塑性铰方法考虑截面的分布塑性。传统的基于刚度的单元在使用较少的单元对塑性构件进行建模时精度较低,而基于柔度的单元在高应力条件下具有优异的性能。这将大大提高直接塑性分析的准确性和计算效率,从而可以更广泛地应用于实际设计中。几个例子被用来验证沿着这条思路提出的元素的准确性和效率。
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