Efficiency Assessment of the Composite Materials Repair Systems Intended for Corrosion Damaged Pipelines

A. Dumitrescu, A. Diniță
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引用次数: 1

Abstract

This paper presents the results of the research work carried out by the authors in order to evaluate the efficiency of the composite material wraps/sleeves (made of a polymeric matrix and reinforcing fabric) used to repair steel pipelines carrying hydrocarbons upon which local metal loss defects (generated by corrosion and/or erosion processes) have been detected. The pipeline repair technologies consisting of the application of composite material wraps are perceived as being advantageous alternative solutions for substituting the conventional technologies, which require welding operations to be performed in the pipe areas with defects. The efficiency of the composite repair systems has been investigated by assessing the reinforcement effects (the restoration level of the damaged pipe mechanical strength) generated by the applied composite wraps as a function of their geometry and mechanical properties. To that purpose, numerical models based on finite elements have been developed and certified by comparing them with the results of several experimental programs previously performed by the authors. Finite elements simulations have also been conducted in the plastic region, taking into account material non-linearity. The calculation methods proposed in literature (among which a method previously developed by the authors) to define the composite wrap dimensions (thickness and length) for a given pipe have also been investigated and compared to our numerical results in order to select the most adequate solution for the design of the composite repair system. The optimal values for the mechanical properties of the composite material used by the repair system have also been defined.
腐蚀受损管道复合材料修复系统的效率评估
本文介绍了作者进行的研究工作的结果,目的是评估复合材料包套/套管(由聚合物基体和增强织物制成)用于修复已检测到局部金属损失缺陷(由腐蚀和/或侵蚀过程产生)的输送碳氢化合物的钢管道的效率。使用复合材料包裹的管道修复技术被认为是替代传统技术的有利替代方案,传统技术需要在有缺陷的管道区域进行焊接操作。复合材料修复系统的效率通过评估加固效果(受损管道机械强度的恢复水平)作为其几何和机械性能的函数由应用复合材料包裹产生。为此,建立了基于有限元的数值模型,并与作者先前进行的几个实验程序的结果进行了比较。在考虑材料非线性的情况下,对塑性区域进行了有限元模拟。本文还研究了文献中提出的用于确定给定管道的复合材料包层尺寸(厚度和长度)的计算方法(其中包括作者先前开发的一种方法),并将其与我们的数值结果进行了比较,以便为复合材料修复系统的设计选择最合适的解。还确定了修复系统所使用的复合材料力学性能的最佳值。
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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