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运用循环阳极极化曲线研究了不同温度和浓缩度的海水介质中316L不锈钢的点蚀行为.结果表明,在1~3倍浓缩度范围内,316L不锈钢的点蚀电位和再钝化电位均随着温度的升高而线性降低,但当浓缩度高于2倍、温度大于85℃时,点蚀电位变化较小;在25~95℃温度范围内,点蚀电位和再钝化电位与海水浓缩度的对数呈线性关系.浓缩度对316L不锈钢点蚀性能的影响比温度更小,并根据点缺陷理论分析了二者对点蚀的作用机制.

参考文献

[1] Wade N W.Desalination,1993; 93:343
[2] Olsson J.Desalination,2005; 183:217
[3] Khawaji A D,Kutubkhanah I K,Wie J M.Desalination,2008; 221:47
[4] Budhiraja P,Fares A A.Desalination,2008; 220:313
[5] Al-Shammiri M,Safar M.Desalination,1999; 126:45
[6] Hospadaruk V,Petrocelli J V.JElectrochem Soc,1966; 113:878
[7] Moayed M H,Laycock N J,Newman R C.Corros Sci,2003; 45:1203
[8] Laycock N J,Newman R C.Corros Sci,1988; 40:887
[9] Hong T,Nagumo M.Corros Sci,1997; 39:288
[10] Moretti G,Quartarone G,Tassan A,Zingales A.Mater Corros,1993; 44:24
[11] Tsutsumi Y,Nishikata A,Tsuru T.Corros Sci,2007; 49:1394
[12] Cheng X Q,Li X G,Du C W.Acta Metall Sin,2006; 42:299(程学群,李晓刚,杜翠薇.金属学报,2006; 42:299)
[13] Liao J X,Jiang Y M,Wu W W,Zhong C,Li J.Acta Metall Sin,2006; 42:1187(廖家兴,蒋益明,吴玮巍,钟澄,李劲.金属学报,2006; 42:1187)
[14] Yashiro H,Tanno K,Koshiyama S,Akashi K.Corrosion,1996;52:109
[15] Sikora J,Sikora E,Macdonald D D.Electrochim Acta,2000; 45:1875
[16] Wang J H,Su C C,Szklarska-Smialowska Z.Corrosion,1988;44:732
[17] Stockert L,Hunkeler F,Bohni H.Corrosion,1985; 41:676
[18] Wei X,Dong J H,Tong J,Zheng Z,Ke W.Acta Metall Sin,2012;48:502(魏欣,董俊华,佟健,郑志,柯伟.金属学报,2012; 48:502)
[19] Li M C,Zeng C L,Lin H C,Cao C N.Acta Metall Sin,2002; 36:1287(李谋成,曾潮流,林海潮,曹楚南.金属学报,2002; 36:1287)
[20] Frankel G S,Stockert L,Hunkeler F,Bohni H.Corrosion,1987;43:429
[21] Hunkeler F,Frankel G S,Bohni H.Corrosion,1987; 43:189
[22] Malik A U,Mayan Kutty P C,Siddiqi N A,Andijani I N,Ahmed S.Corros Sci,1992; 33:1809
[23] Park J O,Matsch S,Bohni H.JElectrochem Soc,2002; 149:34
[24] Leckie H P,Uhlig H H.JElectrochem Soc,1966; 115:1262
[25] Macdonald D D.JElectrochem Soc,1992; 139:3434
[26] Macdonald D D.Electochim A cta,2011; 56:1761
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