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Dynamic analysis of multi-layered filament-wound composite pipes subjected to cyclic internal pressure and cyclic temperature

机译:循环内压和循环温度下多层缠绕复合管的动力分析

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Based on the three-dimensional anisotropic elasticity, the stress analysis of multi-layered filament-wound composite pipes subjected to cyclic internal pressure and temperature loading is conducted in this article. The time-dependent stress, strain and deformation distributions are numerically obtained by the use of the finite difference technique. The pressure and temperature are considered to be symmetrical about the axis of the cylinder and independent of the axial coordinate. Each layer of the pipes is made of a homogeneous, anisotropic and linearly elastic material and it is assumed that the material properties do not change with increasing the temperature. The shear extension coupling is also considered because of lay-up angles. Numerical results obtained from the present model are compared with other published results and good agreement has been achieved.
机译:本文基于三维各向异性弹性,对多层纤维缠绕复合管在循环内压和温度载荷作用下的应力进行了分析。时间有限的应力,应变和变形分布是通过使用有限差分技术获得的。压力和温度被认为是关于圆柱轴对称的,并且与轴向坐标无关。管道的每一层均由均质,各向异性和线性弹性材料制成,并且假定材料特性不会随温度升高而变化。由于叠置角度,还考虑了剪切扩展耦合。从本模型获得的数值结果与其他已发表的结果进行了比较,并取得了良好的一致性。

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