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An elastic-plastic analysis of large deflection of thin shell structure using a delta-sequence function

机译:薄壳结构大挠度的弹塑性分析

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摘要

The analysis of thin shell under large deflection has complex problem associated with the geometrical and material nonlinearities, in which the solutions for stress and deformation are desired to obtain the same level accuracy. One of ordinary and powerful method for this subject is a finite element method that has generally inconvenience to be necessarily extensive calculation due to large number of freedom. This paper is concerned with the elastic-plastic analysis of thin shell structures by the hybrid method using a functional for the principle of modified complementary energy. For elastic-plastic materials, the numerical calculation could be well executed by the way that the stress distribution across the panel thickness is expressed as continuous function using the delta-sequence function. This approach introduces a considerable way for the reduction of computing volume. The proposed method was applied to discuss the resisting mechanism of thin shell structure under large deflection.
机译:大挠度下薄壳的分析存在着与几何和材料非线性有关的复杂问题,其中应力和变形的解决方案需要获得相同的水平精度。对于该主题而言,一种普通而有效的方法是有限元方法,由于存在大量的自由度,因此通常不便必须进行大量的计算。本文涉及利用一种基于修正互补能原理的函数的混合方法对薄壳结构进行弹塑性分析。对于弹塑性材料,数值计算可以很好地执行,方法是将整个面板厚度的应力分布表示为使用增量序列函数的连续函数。这种方法引入了一种减少计算量的重要方法。将该方法应用于讨论大挠度下薄壳结构的抵抗机理。

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