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Advances in Damage Resistant Coating Technology

机译:防损伤涂层技术的进步

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Fusion bonded epoxy (FBE) coatings have been used on pipelines as protection against corrosion for 50 years. They have been used as a stand-alone product in single layer systems and as a primer in dual layer FBE and three layer polyolefin systems. Pipeline coating systems require physical properties that minimize damage during transit, installation and operation. Damage to the coating leads to higher potential corrosion sites on the metallic surface and could ultimately lead to a decrease in service life. There are several ways that have been used conventionally to attempt to make a FBE coating more resistant to mechanical damage. In one conventional approach, the thickness of the overall coating is increased to provide added absorption of impact and abrasion. However, as the thickness of the coating increases, the coating has a increased tendency to crack. Another conventional approach to enhance damage resistance is to add an abrasion resistant overcoat that has a high filler loading to increase abrasion resistance and decrease impact damage. However, higher filler loadings can dramatically decrease the flexibility of the FBE coating. Yet another conventional approach to enhance damage resistance is to use a three layer polyolefin coating system. Unfortunately, when damage does occur in these systems, cathodic shielding may allow corrosion to develop unchecked. This paper will present a novel coating system that incorporates both damage resistance and flexibility in a system that is not subject to cathodic shielding.
机译:融合键合环氧树脂(FBE)涂料已用于管道,以防止腐蚀50年。它们已被用作单层系统中的独立产品,并作为双层FBE和三层聚烯烃系统中的底漆。管道涂层系统需要物理性质,可最大限度地减少运输过程中损坏,安装和操作。涂层的损坏导致金属表面上更高的潜在腐蚀点,最终可能导致使用寿命的减少。传统上使用了几种方式,以试图使FBE涂层更耐受机械损坏。在一种常规方法中,总涂层的厚度增加以提供增加的冲击和磨损的吸收。然而,随着涂层的厚度增加,涂层具有增加的裂缝倾向。增强损伤阻力的另一种常规方法是添加具有高填充物负荷的耐磨性外涂层,以增加耐磨性并降低冲击损伤。然而,较高的填充载荷可以显着降低FBE涂层的柔韧性。另一种增强损伤阻力的常规方法是使用三层聚烯烃涂料系统。遗憾的是,当这些系统中发生损坏时,阴极屏蔽可以允许腐蚀未被选中地发展。本文将介绍一种新型涂层系统,该涂层系统包括不受阴极屏蔽的系统中的损伤性和灵活性。

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