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作 者:Itaru Ikeda[1] Noriyuki Tanaka[1] Motoki Kuratani[1] Yutaka Yamada[1] Osamu Sakurada[1]
出 处:《Materials Sciences and Applications》2020年第1期70-80,共11页材料科学与应用期刊(英文)
摘 要:Corrosion has been reported to occur in the copper tubes of heat ex-changers in multiple-circulation hot water supply systems. We have been investigating the applicability of high-strength Cu-0.65 mass% Sn-0.014 mass% Zr-0.020 mass% P alloy to counteract this corrosion. Immersion tests, electrochemical measurements, and field tests were performed. Excellent corrosion resistance of the alloy was established under conditions with flowing water due to the formation of composite films containing tin. The alloy is expected to be better than copper as a corrosion-resistant material for heat exchanger tubes.Corrosion has been reported to occur in the copper tubes of heat ex-changers in multiple-circulation hot water supply systems. We have been investigating the applicability of high-strength Cu-0.65 mass% Sn-0.014 mass% Zr-0.020 mass% P alloy to counteract this corrosion. Immersion tests, electrochemical measurements, and field tests were performed. Excellent corrosion resistance of the alloy was established under conditions with flowing water due to the formation of composite films containing tin. The alloy is expected to be better than copper as a corrosion-resistant material for heat exchanger tubes.
关 键 词:Cu-Sn-Zr Alloy CORROSION Resistance Heat EXCHANGER HOT Water Supply System Flow CONDITION
分 类 号:TG1[金属学及工艺—金属学]
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