塑料屈曲能量消耗的比较

Quoc Son Nguyen
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引用次数: 2

摘要

能级比较是弹性屈曲中的一个经典问题。在塑性屈曲中,这种比较也可以通过能量消耗的概念来完成,这是将保守系统的势能扩展到耗散系统。在标准塑性中,讨论了分岔后基本分支和分岔分支的能量消耗差异。主要的难点在于满足切线模量和总载荷条件的分岔点。在这种特殊情况下,有或没有弹性卸载都可能发生分岔。在所有情况下,与载荷增加的弹性分岔一样,能量消耗的差值相对于模态分量为3阶,并且在一定的对称条件下,分岔分支具有较低的能量消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparaison des énergies dépensées en flambage plastique

The comparison of energy levels is a classical problem in elastic buckling. In plastic buckling, this comparison can also be done through the notion of energy expense, which is an extension of the potential energy of conservative systems to dissipative systems. The difference of the energy expenses associated with the fundamental and the bifurcated branches just after bifurcation is discussed here in standard plasticity. The principal difficulty concerns bifurcation points satisfying the conditions of tangent modulus and total loading. In this particular situation, bifurcation may occur with or without elastic unloading. It is established in all cases that, as in elastic bifurcation with increasing load, the difference of energy expenses is of order 3 with respect to the modal component and that bifurcated branch has a lower energy expense under a certain condition of symmetry.

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