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Effects of fiber misalignment and transverse shear modulus on localization and shear crippling instability in thick imperfect cross-ply rings under external pressure

机译:纤维错位和横向剪切模量对外部压力下不完整厚交叠环局部和剪切破坏的不稳定性的影响

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摘要

The effect of transverse shear modulus on the compressive response of a thick plane strain cross-ply ring (very long cylindrical shell) weakened by the presence of a modal imperfection is investigated. The present study is primarily motivated to obtain the hitherto unavailable results pertaining to the effect of reduced transverse shear modulus, G_(LT)~*, of a lamina weakened by the presence of randomly distributed fiber misalignments. A simple expression for the reduced transverse shear modulus, G_(LT)~*, of a layer material is derived in terms of the average fiber misalignment angle. A fully nonlinear finite element analysis, that employs a cylindrically curved 16-node layer-element and is based on the assumption of layer-wise linear displacement distribution through thickness (LLDT), is utilized in the analysis of the afore-mentioned cross-ply ring. The interaction of a micro-structural defect in the form of initial fiber misalignments with its macro-structural counterpart represented by a modal imperfection is a key to understanding this meso-structural level phenomenon. Hitherto unavailable numerical results pertaining to the influence of this effect on the localization of buckling patterns and the ensuing shear crippling instability are also presented.
机译:研究了横向剪切模量对存在模态缺陷的薄平面应变交叉层环(很长的圆柱壳)的压缩响应的影响。本研究的主要目的是获得迄今无法获得的结果,该结果与由于随机分布的纤维错位的存在而削弱的薄片的横向剪切模量G_(LT)〜*降低的影响有关。根据平均纤维未对准角,得出层材料的减小的横向剪切模量G_(LT)〜*的简单表达式。在上述交叉层的分析中,采用了一个完全非线性的有限元分析,该分析采用了圆柱弯曲的16节点层单元,并基于层厚度方向线性位移分布(LLDT)的假设。环。以初始纤维未对准形式存在的微观结构缺陷与其以模态缺陷表示的宏观结构对应物之间的相互作用是理解这种细观结构现象的关键。迄今为止,还提供了与该效应对屈曲模式的局部影响以及随之而来的剪切蠕变不稳定性有关的无法获得的数值结果。

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