The generalized constitutive law in nonlinear structural analysis of steel frames

D. Mrówczyński, T. Gajewski, T. Garbowski
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引用次数: 4

Abstract

The article presents a modified finite element (FE) based algorithm for nonlinear analysis of 2D beam structures, which takes into account the influence of the shear forces. The method proposed enables using complex materials with nonlinearities without the need of implementing advanced constitutive models in FE routines. It can be directly integrated with commonly available FE software for linear analysis of beam structures, so its functionality can be easily extended also with material nonlinearities. The presented approach adopts the generalized constitutive law algorithm to iteratively modify the stiffness of beam element. To address an influence of a shear stiffness, a Timoshenko beam element was used. The methodology was implemented and its performance was verified on several numerical examples. For validation, the displacements and the ultimate loads were compared with the values from a commercial FE software. The results shown a good correlation between the reference model and the method proposed.
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钢框架非线性结构分析中的广义本构律
本文提出了一种考虑剪力影响的二维梁结构非线性分析的改进有限元算法。所提出的方法可以使用具有非线性的复杂材料,而不需要在有限元程序中实现先进的本构模型。它可以直接与常用的有限元软件集成,用于梁结构的线性分析,因此它的功能可以很容易地扩展到材料非线性。该方法采用广义本构法迭代修正梁单元刚度。为了解决剪切刚度的影响,采用了Timoshenko梁单元。通过实例验证了该方法的有效性。为了验证,位移和极限载荷与商业有限元软件的值进行了比较。结果表明,参考模型与所提出的方法具有良好的相关性。
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