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ENHANCED CORROSION RESISTANCE OF IRON-BASED AMORPHOUS ALLOYS

机译:铁基非晶态合金的增强耐蚀性

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摘要

Iron-based amorphous alloys possess enhanced hardness and are highly resistant to corrosion, which make them desirable for wear applications in corrosive environments. It was of interest to examine the behavior of amorphous alloys during anodic polarization in concentrated salt solutions and in the salt-fog testing. Results from the testing of one amorphous material (SAM2X5) both in ribbon form and as an applied coating are reported here. Cyclic polarization tests were performed on SAM2X5 ribbon as well as on other nuclear engineering materials. SAM2X5 showed the highest resistance to localized corrosion in 5 M CaCl_2 solution at 105°C. Salt fog tests of 316L SS and Alloy 22 coupons coated with amorphous SAM2X5 powder showed resistance to rusting. Partial devitrification may be responsible for isolated pinpoint rust spots in some coatings.
机译:铁基非晶态合金具有增强的硬度并且高度耐腐蚀,这使其非常适合腐蚀性环境中的磨损应用。研究非晶态合金在浓盐溶液中的阳极极化过程中以及在盐雾测试中的行为是很有意义的。在此报告了一种无定形材料(SAM2X5)的测试结果,该材料既呈带状,又呈涂层状。在SAM2X5碳带以及其他核工程材料上进行了循环极化测试。 SAM2X5在105°C的5 M CaCl_2溶液中显示出最高的耐局部腐蚀能力。 316L不锈钢和22合金试样的无水SAM2X5粉末的盐雾测试显示出防锈性能。部分失透可能是某些涂料中孤立的细微锈斑的原因。

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