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Effect of thickness on buckling of perfect cross-ply rings under external pressure

机译:厚度对外部压力下理想交叉层环屈曲的影响

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摘要

Effect of thickness on the buckling of a perfect thick plane strain cross-ply ring (very long cylindrical shell) is investigated. A linearized version of 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 displacements distribution through thickness (LLDT), is utilized for computation of hydrostatic buckling pressure of the afore-mentioned cross-ply ring. Numerical results pertaining to the effect of thickness (interlaminar shearormal deformation) on the hydrostatic buckling pressure of cross-ply rings and comparison with their classical lamination theory (CLT) counterparts are also presented.
机译:研究了厚度对理想厚平面应变交叉层环(非常长的圆柱壳)的屈曲的影响。完全非线性有限元分析的线性化版本,它使用圆柱弯曲的16节点层单元,并基于通过厚度的层级线性位移分布(LLDT)的假设,用于计算静压屈曲压力上面提到的交叉层环。还给出了与厚度(层间剪切/法向变形)对交叉层环的静水屈曲压力影响有关的数值结果,并与经典层合理论(CLT)进行了比较。

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