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Galvanic Protection Coatings for 5xxx Series Aluminum Alloys

机译:用于5xxx系列铝合金的电镀保护涂层

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Sensitization of 5xxx series aluminum alloys is a significant concern for the U.S. Navy as the alloys have found use in a variety of ship structures for improved strength-to-weight ratios and enhanced corrosion resistance. Sensitization occurs when precipitates of B-phase magnesium aluminide form at grain boundaries when 5xxx alloys are exposed to elevated temperatures for prolonged periods. These B-phase precipitates are anodic relative to the aluminum matrix and corrode rapidly in the presence of an aggressive electrolyte. This corrosion can result in large crack formation under applied stress. Galvanic primers have been found to be effective at reducing this crack formation by effectively polarizing the sensitized structure into a passive potential range. This paper will review primers that Luna has developed and explore a variety of commercially available ones. Performance test results will be presented including those obtained using a unique atmospheric corrosion test method that measures time to crack initiation on coated/bare notched and sensitized 5xxx alloy samples. The method allows for mechanical load and test environment variability and is low-cost to enable rapid sample throughput. The top coating candidates are presented, based on a variety of performance testing, including the aforementioned atmospheric corrosion tests. The galvanic coatings have been found to drastically increase the lifetime of coupons by reducing the time to crack initiation and crack growth rate in accelerated atmospheric testing. The protective coatings may find use in extending the service life of existing structures and protecting new ones from sensitization effects.
机译:5xxx系列铝合金的敏化是美国海军关注的重大问题,因为该铝合金已发现可用于多种船舶结构中,以提高强度重量比和增强耐腐蚀性。当5xxx合金长时间暴露在高温下时,当B相铝化镁的析出物在晶界形成时,就会发生敏化。这些B相沉淀物相对于铝基体为阳极,并在存在侵蚀性电解质的情况下迅速腐蚀。这种腐蚀会在施加应力的情况下导致大的裂纹形成。已经发现电化底漆通过有效地使敏化的结构极化到被动电位范围内,可有效地减少这种裂纹的形成。本文将回顾Luna开发的引物,并探索各种市售引物。将介绍性能测试结果,包括使用独特的大气腐蚀测试方法获得的结果,该方法可测量涂层/裸露缺口和敏化5xxx合金样品上裂纹萌生的时间。该方法可实现机械负载和测试环境的可变性,并且成本低廉,可实现快速的样品通量。根据各种性能测试,包括上述的大气腐蚀测试,给出了最适合的面漆。已经发现,通过在加速的大气测试中减少裂纹萌生的时间和裂纹的生长速率,电镀涂层可以极大地增加试样的寿命。保护性涂层可用于延长现有结构的使用寿命并保护新结构免受敏化作用。

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