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首页> 外文期刊>Engineering Fracture Mechanics >Stress intensity factor and energy release rate of externally pressurized thick cross-ply (very) long cylindrical shells with low-hardening transverse shear modulus nonlinearity
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Stress intensity factor and energy release rate of externally pressurized thick cross-ply (very) long cylindrical shells with low-hardening transverse shear modulus nonlinearity

机译:具有低硬化横向剪切模量非线性的外压厚交叉层(非常)长圆柱壳的应力强度因子和能量释放率

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摘要

Combined effects of modal imperfections, transverse shearormal deformation along with the nonlinear hypo-elastic transverse shear (GTT) material property on the emergence of interlaminar shear crippling type instability modes, related to the 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 under applied hydrostatic pressure, are investigated. The primary accomplishment is the (hitherto-unavailable) computation of the layer-wise mode II fracture toughness, fracture energy and kink crack band-width, under hydrostatic compression, from a nonlinear Finite Element Analysis (FEA), using Maxwell's construction and Griffith's energy balance approach. (C) 2015 Elsevier Ltd. All rights reserved.
机译:模态缺陷,横向剪切/法向变形以及非线性次弹性横向剪切(GTT)材料特性对层间剪切致残型失稳模式的出现的综合影响,与局部化(变形软化的开始),离域化(开始的)有关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中II型压缩断裂/损伤的传播。主要成就是使用静力学压缩,通过非线性有限元分析(FEA),使用麦克斯韦构造和格里菲斯能量,(静力学上无法计算)分层模式II的断裂韧度,断裂能和扭结裂纹带宽。平衡法。 (C)2015 Elsevier Ltd.保留所有权利。

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