Mechanical Behaviors of Steel Strip Reinforced Flexible Pipes Under Bending

Shan Jin, Shuai Yuan, Ting Liu, Peihua Han, Yong Bai
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Abstract

Steel strip reinforced flexible pipe (SSRFP) is a kind of unbonded composite pipe, which has more application foreground in offshore engineering due to its excellent mechanics and the considerable flexibility. In practical application, SSRFP will inevitably experience bending during reeling process and installation. In this paper, the mechanical behavior of SSRFP subjected to pure bending are studied both experimentally and numerically. A four-point bending equipment is utilized to conduct the full-scale laboratorial tests of SSRFP. Furthermore, the commercial software ABAQUS is employed to simulate its ovalization instability. The results acquired from the ABAQUS simulation are compared with the ones from verification bending experiment, which are in good coincidence with each other. The proposed model and the relative results may be of interest to the manufacture factory engineers.
钢带加筋挠性管的弯曲力学行为
钢带增强柔性管(SSRFP)是一种无粘结复合管,由于其优异的力学性能和相当的柔韧性,在海洋工程中具有更大的应用前景。在实际应用中,SSRFP在缫丝过程和安装过程中不可避免地会发生弯曲。本文对SSRFP在纯弯曲作用下的力学行为进行了实验和数值研究。利用四点弯曲设备对SSRFP进行了全尺寸的实验室测试。利用商业软件ABAQUS对其卵化不稳定性进行了仿真。将ABAQUS仿真结果与验证弯曲实验结果进行了比较,结果吻合较好。所提出的模型和相关结果可能对制造工厂的工程师感兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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