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材料非线性对复合材料结构设计的影响——弹塑性行为

Effects of Material Nonlinearities on Design of Composite Constructions-Elasto-Plastic Behaviour.

作者信息

Muc Aleksander

机构信息

Institute of Machine Design, Cracow University of Technology, 31-155 Cracow, Poland.

出版信息

Materials (Basel). 2020 Apr 10;13(7):1792. doi: 10.3390/ma13071792.

Abstract

Usually, the design of composite structures is limited to the linear elastic analysis only. The experimental results discussed in the paper demonstrate the physical non-linear behaviour both for unidirectional and woven roving composites. It is mainly connected with the micromechanical damages in composite structures, particularly with the effects of matrix cracking modeled in the form of elastic-plastic physical relations. In the present paper, the effects of both physical and geometrical non-linearities are taken into account. Their influence on the limit states (understood in the sense of buckling or failure/damage) of composite structures is discussed. The numerical examples deal with the behaviour of composite pressure vessels components, such as a cylindrical shell and the reinforcement of the junction of shells. The optimisation method of the reinforcement thickness is also formulated and solved herein.

摘要

通常情况下,复合结构的设计仅局限于线性弹性分析。本文所讨论的实验结果表明,单向和编织粗纱复合材料均呈现出物理非线性行为。这主要与复合结构中的细观力学损伤相关,特别是与以弹塑性物理关系形式建模的基体开裂效应有关。在本文中,同时考虑了物理非线性和几何非线性的影响。讨论了它们对复合结构极限状态(从屈曲或失效/损伤的意义上理解)的影响。数值算例涉及复合压力容器部件的行为,如圆柱壳以及壳连接部位的加强。本文还制定并求解了加强厚度的优化方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72a2/7179018/716964905907/materials-13-01792-g001.jpg

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