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Effects of thickness and modal imperfection amplitude on elastic collapse pressure of a cross-ply imperfect ring

机译:厚度和模态缺陷振幅对交叉缺陷环弹性塌陷压力的影响

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摘要

Effects of thickness and modal imperfection amplitude on mode 2 elastic collapse pressures of thin, moderately thick and thick cross ply perfect and imperfect rings are investigated in detail. A recently developed nonlinear resonance (eigenvalue) based semi-analytical solution technique is employed here for computation of the elastic mode 2 collapse pressures of thin to thick cross-ply rings, weakened by modal or harmonic type imperfections. A von Karman type iterative nonlinear analysis, which is based on the assumptions of transverse inextensibility and first-order shear deformation theory (FSDT), is utilized for computation of hydrostatic collapse pressure of the perfect/imperfect cross-ply ring. Interesting and hitherto unavailable numerical results pertaining to the effects of thickness and amplitude of modal imperfection on the hydrostatic collapse pressures of imperfect cross-ply rings and comparison with their perfect counterparts are also presented.
机译:详细研究了厚度和模态缺陷振幅对薄,中厚和厚交叉层完美和不完美环的模式2弹性塌陷压力的影响。此处采用了最近开发的基于非线性共振(特征值)的半解析解技术来计算从薄到厚的交叉层环的弹性模态2塌陷压力,这些应力被模态或谐波类型的缺陷所削弱。基于横向不可延展性和一阶剪切变形理论(FSDT)的von Karman型迭代非线性分析,用于计算理想/不理想交叉铺层环的静水坍塌压力。还给出了与模态缺陷的厚度和幅度对不完善的交叉层环的静水压塌压力的影响有关的有趣的,迄今无法获得的数值结果,并与它们的完美对应物进行了比较。

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