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Finite Element Analysis of Composite Repair for Damaged Steel Pipeline

机译:损坏钢管钢管复合修复的有限元分析

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Carbon fiber reinforced polymer (CFRP) matrix composite overwrap repair systems have been introduced and accepted as an alternative repair system for steel pipeline. This paper aimed to evaluate the mechanical behavior of damaged steel pipeline with CFRP repair using finite element (FE) analysis. Two different repair strategies, namely wrap repair and patch repair, were considered. The mechanical responses of pipeline with the composite repair system under the maximum allowable operating pressure (MAOP) was analyzed using the validated FE models. The design parameters of the CFRP repair system were analyzed, including patch/wrap size and thickness, defect size, interface bonding, and the material properties of the infill material. The results show that both the stress in the pipe wall and CFRP could be reduced by using a thicker CFRP. With the increase in patch size in the hoop direction, the maximum von Mises stress in the pipe wall generally decreased as the maximum hoop stress in the CFRP increased. The reinforcement of the CFRP repair system could be enhanced by using infill material with a higher elastic modulus. The CFRP patch tended to cause higher interface shear stress than CFRP wrap, but the shear stress could be reduced by using a thicker CFRP. Compared with the fully bonded condition, the frictional interface causes a decrease in hoop stress in the CFRP but an increase in von Mises stress in the steel. The study results indicate the feasibility of composite repair for damaged steel pipeline.
机译:已经引入碳纤维增强聚合物(CFRP)基质复合材料超包修复系统并被接受为钢管道的替代修复系统。本文旨在使用有限元(Fe)分析评估CFRP修复损坏钢管管道的力学行为。考虑了两种不同的修复策略,即包装修复和补丁修复。使用验证的FE模型分析了在最大允许的工作压力下与复合修复系统的管道与复合修复系统的机械响应。分析了CFRP修复系统的设计参数,包括贴片/包装尺寸和厚度,缺陷尺寸,界面粘合,以及填充材料的材料特性。结果表明,通过使用较厚的CFRP,可以减少管壁和CFRP中的应力。随着箍方向上的贴片尺寸的增加,由于CFRP中的最大箍应力增加,管壁中的最大VON误判压力通常降低。通过使用具有更高弹性模量的填充材料,可以提高CFRP修复系统的加固。 CFRP贴片倾向于引起比CFRP包装更高的接口剪切应力,但是通过使用较厚的CFRP可以减少剪切应力。与完全粘合的条件相比,摩擦界面导致CFRP中的箍应力降低,但钢中的VON误差增加。该研究结果表明损坏钢管钢管道复合修复的可行性。

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