首页> 外文期刊>International Journal of Pressure Vessels and Piping >Failure analysis of thermoplastic composite pipe (TCP) under combined pressure, tension and thermal gradient for an offshore riser application
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Failure analysis of thermoplastic composite pipe (TCP) under combined pressure, tension and thermal gradient for an offshore riser application

机译:综合压力下压力,张力和热梯度下热塑性复合管(TCP)的失效分析

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摘要

Useful characteristics of fibre-reinforced therMoplastics, including high specific strengths and moduli and excellent corrosion resistance, make them ideal candidates for offshore riser pipe applications. When in operation, risers are subjected to combined mechanical and thermal loading. In the present paper, a 3D finite element (FE) model is used to analyse stress state in a section of thermoplastic composite pipe (TCP), consisting of a fibre-reinforced thermoplastic laminate fully bonded between inner and outer thermoplastic liners; under conditions illustrative of a deepwater riser application. The effects of varying combinations of pressure and thermal differentials on the distribution of stress-based failure coefficient are examined. Failure responses under different axial tensions at low/high pressures and temperatures are assessed for configurations with different laminate ply stacking sequences. Temperature-dependent material properties are considered in the thermomechanical analysis.
机译:纤维增强热塑性塑料的有用特性,包括高比强度和模态和优异的耐腐蚀性,使其成为海上立管管道应用的理想候选者。在运行中,升序液相同机械和热负荷。在本文中,3D有限元(Fe)模型用于分析热塑性复合管(TCP)部分中的应力状态,由纤维增强热塑性层压板组成,该纤维增强热塑性层压板完全粘合在内和外热塑性衬垫之间;在深水提升机应用的条件下。研究了改变压力和热差异组合对基于应力的失效系数分布的影响。在低/高压和温度下不同轴向紧张局势下的故障响应被评估为具有不同层压层堆叠序列的配置。在热机械分析中考虑温度依赖性材料特性。

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