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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Effects of thickness and fibre misalignment on compression fracture in cross-ply (very) long cylindrical shells under external pressure
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Effects of thickness and fibre misalignment on compression fracture in cross-ply (very) long cylindrical shells under external pressure

机译:厚度和纤维未对准对交叉(甚)长圆柱壳在外部压力下压缩断裂的影响

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摘要

Combined effects of modal imperfections, transverse shearormal deformation with/without reduced transverse shear modulus, GLT (caused by distributed fibre misalignments), on emergence of interlaminar shear crippling type instability modes, related to localization (onset of deformation softening), delocalization (onset of deformation hardening) and propagation of mode II compression fracture/damage, in thick imperfect cross-ply very long cylindrical shells (plane strain rings) under applied hydrostatic pressure, are investigated. Of special interest is the question: what are the geometric and/or material parameters that induce localized and delocalized states in imperfect cross-ply (very) long cylindrical shells under hydrostatic compression simultaneously, and what would be the consequences of such occurrences? The primary accomplishment is the (hitherto unavailable) computation of the layer-wise mode II stress intensity factor, energy release rate and kink-crack bandwidth, under hydrostatic compression, froma nonlinear finite-element analysis, using Maxwell's construction and Griffith's energy balance approach. Additionally, the shear crippling angles in the layers are determined using an analysis, pertaining to the elastic inextensional deformation of the compressed (plane strain) ring. Numerical results include effects of (i) thickness-induced transverse shearormal deformation and (ii) uniformly distributed fibre misalignments, on localization and delocalization, and consequently on compression fracture/damage characteristics of thick imperfect cross-ply very long cylindrical shells.
机译:模态缺陷,横向剪切/具有/不具有减小的横向剪切模量的法向变形,GLT(由分布的纤维错位引起)的组合效应,对层间剪切致残型失稳模式的出现,与局部化(变形软化的开始),离域化(在施加静水压力的情况下,研究了厚的不完美的交叉层非常长的圆柱壳(平面应变环)中的变形硬化的发生和II型压缩断裂/损伤的传播。一个特别引起关注的问题是:在静水压力下同时导致不完美的交叉(非常)长圆柱壳中的局部和非局部状态的几何和/或材料参数是什么,这种现象的后果是什么?首要的成就是使用静力压缩,通过非线性有限元分析,使用麦克斯韦的构造和格里菲斯的能量平衡方法,在静液压压缩下,计算了层模式II应力强度因子,能量释放速率和扭折裂纹带宽(迄今为止尚不可用)。另外,使用与压缩(平面应变)环的弹性无伸长变形有关的分析来确定层中的剪切蠕变角。数值结果包括(i)厚度引起的横向剪切/法向变形和(ii)均匀分布的纤维未对准对局部和离域的影响,并因此对厚的,不完善的交叉非常长的圆柱壳的压缩断裂/损伤特性的影响。

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