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Collapse and Buckling Behaviors of Reinforced Thermoplastic Pipe Under External Pressure

机译:外力作用下热塑性管的塌陷和屈曲行为

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The collapse and buckling behaviors of reinforced thermoplastic pipe (RTP) under external pressure are studied in this paper. A theoretical model which includes axial and shear deformation is applied based on the model initially proposed by Kyriakides and his co-workers. Simulation of the reinforced layers of RTP is simplified using equivalent stiffness method. The load-displacement relation of RTP under external pressure is obtained based on the theoretical model. A three-dimensional (3D) finite element model (FEM) is also built to simulate the response of RTP using the software abaqus. Numerical simulation results from abaqus are similar to those from theoretical model. Besides, external pressure tests for RTP are carried out and the test results are compared with the analyzed results. Finally, factors that influence the external pressure capacity are also studied.
机译:研究了增强热塑性塑料管(RTP)在外部压力下的塌陷和屈曲行为。基于Kyriakides及其同事最初提出的模型,应用了包括轴向变形和剪切变形的理论模型。使用等效刚度方法简化了RTP增强层的仿真。基于理论模型,得出了RTP在外压作用下的载荷-位移关系。还使用软件abaqus建立了三维(3D)有限元模型(FEM),以模拟RTP的响应。 abaqus的数值模拟结果与理论模型相似。此外,还对RTP进行了外部压力测试,并将测试结果与分析结果进行了比较。最后,还研究了影响外部压力能力的因素。

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