Adhesively Bonded FRP Reinforcement of Steel Structures: Surface Preparation Analysis and Influence of the Primer

Q. Sourisseau, Emilie Leprêtre, S. Chataigner, X. Chapeleau, L. Mouton, S. Paboeuf
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Abstract

In tropical areas, with marine environment, high temperature and humidity, corrosion is a constant threat. The maintenance of steel structures (like FPSO’s) is becoming a challenge. The current technique of “crop and renewing” repair involves a certain number of major issues for project owners such as: “hot work”, that is to say welding; temporary weakening of the structure; need to empty, clean and purging the oil tanks of the FPSO’s, resulting in long downtime and an expensive solution. “Cold repair”, such as composite repair, is a promising solution. However, surface preparation and the influence of the primer are crucial issues to be addressed to ensure the strength and reliability of this type solution based on bonded patch. The paper presents an experimental study of the influence of the surface preparation and the primer on the strength of small steel bonded specimens which have been deliberately degraded by corrosion and pollution. Several surface preparation methodologies were investigated and the quality of these preparations was assessed using methods that can be implemented on site. Two main aspects were investigated: the detection of the residual presence of pollutants through the use of a portable infrared spectrometer; and the determination of surface energy after preparation using contact angle and wettability measurement equipment. To study the impact of the primer on the adhesion capacity of the steel surface, critical toughnesses measurements was performed with End notch flexure tests. Three configurations have been tested: bonding with the epoxy resin without initial application of primer and bonding with the Epoxy resin with initial application of two Primer A and B. The results shown clearly that the type of primer and the quality of its application are paramount importance to ensure the strength of steel bonded patches.
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钢结构粘接FRP加固:表面处理分析及底漆的影响
在热带地区,与海洋环境,高温高湿,腐蚀是一个持续的威胁。钢结构(如FPSO)的维护正在成为一个挑战。目前的“裁剪更新”修复技术涉及到项目业主的一些重大问题,如:“热工”,即焊接;临时削弱结构;需要清空、清洁和清洗FPSO的油箱,导致停机时间长,解决方案昂贵。“冷修复”,如复合修复,是一个很有前途的解决方案。然而,为了保证这种基于粘接贴片的类型溶液的强度和可靠性,表面处理和底漆的影响是需要解决的关键问题。本文研究了表面处理和底漆对因腐蚀和污染而故意退化的小钢粘结试样强度的影响。研究了几种表面制备方法,并使用可在现场实施的方法评估了这些制备的质量。主要研究了两个方面:通过使用便携式红外光谱仪检测污染物的残留;并利用接触角和润湿性测量装置测定制备后的表面能。为了研究底漆对钢材表面粘附能力的影响,采用端缺口弯曲试验进行了关键韧性测量。试验了三种配置:与环氧树脂粘接,不先涂底漆;与环氧树脂粘接,先涂两种底漆A和b。结果清楚地表明,底漆的类型和应用质量对保证钢粘接补丁的强度至关重要。
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