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Analysis Of Multi-layered Filament-wound Composite Pipes Under Combined Internal Pressure And Thermomechanical Loading With Thermal Variations

机译:内压与热力作用下热变化的多层丝绕复合管分析

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The composite pipes manufactured by filament winding technology have anisotropic behavior owing to different reinforced ply angles. Composite pipes can be exposed to the thermomechanical loading due to hot fluid that flows into them. In this paper, based on the three-dimensional anisotropic elasticity, an exact elastic solution for thermal stresses and deformations of the pipes under internal pressure and a temperature gradient has been studied. Giving heat convection conditions the variation of temperature field within the pipe is obtained by solving the conduction equation at the wall. The influence of temperature field in the governing equations of thermoelasticity has been considered via a constitutive law. The shear extension coupling is also considered because of lay-up angles. Stress, strain and deformation distributions for different angle-ply pipe designs are investigated using the present theory.
机译:通过纤维缠绕技术制造的复合管由于具有不同的增强层角度而具有各向异性。复合管可能会由于流入其中的热流体而承受热机械负荷。本文基于三维各向异性弹性,研究了在内部压力和温度梯度下管道热应力和变形的精确弹性解。给定热对流条件,可以通过求解壁面的传导方程来获得管道内温度场的变化。已经通过本构关系考虑了温度场对热弹性控制方程的影响。由于叠置角度,还考虑了剪切扩展耦合。使用本理论研究了不同角度层板管设计的应力,应变和变形分布。

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