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Magnesium-Based Sacrificial Anode Cathodic Protection Coatings (Mg-Rich Primers) for Aluminum Alloys

机译:铝合金用镁基牺牲阳极阴极保护涂层(富镁底漆)

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Magnesium is electrochemically the most active metal employed in common structural alloys of iron and aluminum. Mg is widely used as a sacrificial anode to provide cathodic protection of underground and undersea metallic structures, ships, submarines, bridges, decks, aircraft and ground transportation systems. Following the same principle of utilizing Mg characteristics in engineering advantages in a decade-long successful R&D effort, Mg powder is now employed in organic coatings (termed as Mg-rich primers) as a sacrificial anode pigment to protect aerospace grade aluminum alloys against corrosion. Mg-rich primers have performed very well on aluminum alloys when compared against the current chromate standard, but the carcinogenic chromate-based coatings/pretreatments are being widely used by the Department of Defense (DoD) to protect its infrastructure and fleets against corrosion damage. Factors such as reactivity of Mg particles in the coating matrix during exposure to aggressive corrosion environments, interaction of atmospheric gases with Mg particles and the impact of Mg dissolution, increases in pH and hydrogen gas liberation at coating-metal interface, and primer adhesion need to be considered for further development of Mg-rich primer technology.
机译:镁在电化学上是铁和铝的常见结构合金中使用的活性最高的金属。镁被广泛用作牺牲阳极,为地下和海底金属结构,船舶,潜艇,桥梁,甲板,飞机和地面运输系统提供阴极保护。秉承在长达十年的成功研发工作中利用镁特性的技术优势,镁粉现已用作有机涂料(富镁底漆)的牺牲阳极颜料,以保护航空航天级铝合金免受腐蚀。与目前的铬酸盐标准相比,富含镁的底漆在铝合金上的性能非常好,但是国防部(DoD)广泛使用基于致癌铬酸盐的涂料/预处理来保护其基础设施和舰队免受腐蚀破坏。需要暴露在腐蚀性腐蚀环境中的涂层基质中Mg颗粒的反应性,大气与Mg颗粒的相互作用以及Mg溶解的影响,涂层金属界面的pH值和氢气释放增加以及底漆附着力等因素考虑进一步开发富镁底漆技术。

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