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针对目前某型船舱底板保护用三元锌牺牲阳极在油污水环境下容易结壳失效,达不到电化学设计保护要求的现状,通过在油污水模拟环境中的电化学性能测试,优化筛选得到了适合该型船舱底油污水环境使用、效率高的新型铝合金牺牲阳极材料.

参考文献

[1] Kim Seong-Jong;Jang Seok-Ki;Kim Jeong-Ⅱ .Effects of post-weld heat treatment on optium cathodic protection potential of high-strength steel in marine environment conditions[J].Materials Science Forum,2005,5:133-136.
[2] Billingham J;Sharp J V.Review of the performance of high strength steel used off shore[J].Health & Safety Executive,2003:111-117.
[3] C. BATT;J. DODSON;M. J. ROBINSON .Hydrogen embrittlement of cathodically protected high strength steel in sea water and seabed sediment[J].British Corrosion Journal,2002(3):194-198.
[4] Guyader L .Consumable anode for cathodic protection,made of aluminum-based alloy[P].United States Patent:No.5547560,1996-08-20.
[5] Pautasso J P;Guyader L;Debout V.Low voltage cathodic protection for high strength steels:part1-definition of a new aluminum galvanic anode material[A].San Diego:NACE International,1998:1-27.
[6] Lemieux E;Keith E;Hogan E A.Performance evaluation of low voltage anodes for cathodic protection[A].Denver:NACE International,2002:1-11.
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