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Effect of selected elements of the coupling stiffness submatrix on the load-carrying capacity of hybrid columns under compression

机译:耦合刚度子矩阵的选定元素对混合柱受压承载能力的影响

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The problems of a multi-mode buckling approach which is based on Koiter's theory of a hybrid column are presented in this paper. An interaction of global buckling modes with the local ones is discussed. There are many different local and global buckling modes. Their selected combinations are dangerous and cause a reduction in the load-carrying capacity. All walls of the hybrid column were plane and made of many layers. The outer layers were thermal barriers and made of a TiC ceramic layer or an AL-TiC-type FGM. The inner layers were composed of aluminium layers and a few carbon-epoxy laminate layers. The classical laminate theory is used to define the ABD matrix which described the relations between applied loads and the associated deformations. The layup configuration of the hybrid column is general, so the coupling submatrix B is non-trivial. This submatrix has a significant impact on the value of local buckling load, whereas its effect on the value of global buckling load can be neglected. The main topic discussed in this paper is whether and how individual elements of the B submatrix can change the load-carrying capacity of a hybrid column. A detailed discussion is conducted for simple supported columns with opened cross-sections subjected to mechanical loads only. Thermal effects are neglected. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于Koiter混合柱理论的多模式屈曲方法的问题。讨论了整体屈​​曲模式与局部屈曲模式的相互作用。有许多不同的局部和全局屈曲模式。他们选择的组合是危险的,并导致承载能力降低。混合柱的所有壁都是平坦的,并且由多层构成。外层是热障并且由TiC陶瓷层或AL-TiC型FGM制成。内层由铝层和一些碳-环氧层压板层组成。经典的层压理论用于定义ABD矩阵,该矩阵描述了施加的载荷与相关变形之间的关系。混合列的布局配置是常规的,因此耦合子矩阵B是不平凡的。该子矩阵对局部屈曲载荷的值具有显着影响,而对整体屈曲载荷的值的影响可以忽略。本文讨论的主要主题是B子矩阵的各个元素是否以及如何改变混合列的承载能力。对于仅承受机械载荷且具有开放横截面的简单支撑柱进行了详细讨论。热效应被忽略。 (C)2017 Elsevier Ltd.保留所有权利。

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