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Behaviour of reinforced thermoplastic pipe (RTP) under combined external pressure and tension

机译:增强热塑性管(RTP)在外部压力和拉力作用下的行为

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摘要

The problem of reinforced thermoplastic pipe (RTP) buckling or collapse as a result of combined tension and external pressure is investigated in this paper. Based on the theory initially proposed by Kyriakides and his co-workers, a two-dimensional (2D) theoretical model, which takes into account transverse shear deformation, the mean radius change, the wall thickness change and pre-buckling deformation, is developed. By means of numerical calculation, pressure-ovalisation and pressure-axial strain curve are presented for T→P loading. Two failure modes were investigated during the loading path. A three-dimensional (3D) finite element model was further established in ABAQUS to confirm the accuracy of the theoretical model, and the results were found to be in good agreement in the small strain stage. Finally, additional parametric studies were conducted, including the effects of initial ovality, tension, pressure, loading path and pressure-to-tension ratio. Predicted T→P and P→T collapse interaction envelopes are presented and useful conclusions are drawn for RTP's marine engineering application.
机译:本文研究了由于拉伸和外部压力共同作用而导致的增强热塑性塑料管(RTP)屈曲或塌陷的问题。基于Kyriakides及其同事最初提出的理论,开发了一个二维(2D)理论模型,该模型考虑了横向剪切变形,平均半径变化,壁厚变化和预屈曲变形。通过数值计算,给出了T→P载荷下的压力卵形化和压力轴向应变曲线。在加载过程中研究了两种故障模式。在ABAQUS中进一步建立了三维(3D)有限元模型,以确认理论模型的准确性,并且在小应变阶段发现结果是一致的。最后,还进行了其他参数研究,包括初始椭圆度,张力,压力,加载路径和压力拉伸比的影响。给出了预测的T→P和P→T坍塌相互作用包络,并为RTP的海洋工程应用得出了有益的结论。

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