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PURE BENDING BEHAVIOR OF PIPE REINFORCED BY STEEL WIRES (PSP)

机译:钢线(PSP)加固的管材的纯弯曲性能

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Plastic pipe reinforced by helically cross-winding steel wire (PSP) is a composite pipe, which is being applied into the offshore oil and gas industry. However, PSPs are often subjected to bending loading during the reeling process and offshore installations, which may lead to elliptical buckling due to the Brazier effect. Thus the ovalization instability of PSP under pure bending was investigated in this paper. According to the nonlinear ring theory, the ovalization growth of cross section during bending was studied. Then, the formulation was developed based on the principle of virtual work and was efficiently solved by Newton-Raphson method. Besides, a simplified method was proposed to simulate the behavior of steel wire reinforced layer. To verify the accuracy of the theoretical method, an ABAQUS model was employed to simulate the buckling response of PSP under pure bending. The results obtained from the theoretical method were compared with ABAQUS simulation results, and they show excellent agreements. The results can be used for predicting PSP's bending behavior in offshore engineering applications.
机译:由螺旋交叉缠绕钢丝(PSP)增强的塑料管是一种复合管,正在应用于海上石油和天然气行业。但是,在绕线过程和海上安装过程中,PSP经常承受弯曲载荷,这可能由于Brazier效应而导致椭圆形弯曲。因此,本文研究了纯弯曲下PSP的椭圆化不稳定性。根据非线性环理论,研究了弯曲过程中横截面的椭圆化增长。然后,根据虚拟工作原理开发了该配方,并通过牛顿-拉夫森(Newton-Raphson)方法对其进行了有效求解。此外,提出了一种简化的方法来模拟钢丝增强层的行为。为了验证理论方法的准确性,采用了ABAQUS模型来模拟PSP在纯弯曲下的屈曲响应。从理论方法获得的结果与ABAQUS模拟结果进行了比较,它们显示出极好的一致性。结果可用于预测PSP在海上工程应用中的弯曲行为。

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