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以ZG20Cr13为对比材料,在浓度为1mol/L的H2SO4溶液中测定了ZG06Cr13Ni4Mo(简称13-4)和Cr含量降至10.61%、8.34%和6.64%(mass)时材料的阳极极化曲线.利用超声振荡空蚀实验机和洛氏硬度计分别研究了13-4、8.5Cr-4Ni(简称8.5-4)和高强韧性Cr-Ni型不锈钢SRIF的空蚀行为和局域弹性性质,并研究了试验材料的组织和力学性能.结果表明,随13-4中Cr含量降低,材料的电化学腐蚀性能降低.当Cr含量降低至8.34%时,材料的电化学腐蚀性能与ZG20Cr13相当,仍属于不锈钢范畴.8.5-4、13-4和SRIF的局域弹性性质he无明显差别,13-4的抗空蚀性能略高于8.5-4,SRIF的抗空蚀性能明显高于前两者.

参考文献

[1] Gysel W;Gerber E;Trautwein A.CA6NM:New developments based on 20 years experience[J].Stainless Steel Castings,1982(03):403-435.
[2] 娄延春,朗霄,赵芳欣,于波,熊云龙,王景成.铬含量对Cr-Ni型水轮机材料特性的影响与调控[J].铸造,2004(05):345-349.
[3] Pandey J L;Singh I;Singh M N .Electrochemical corrosion behaviour of heat - treated AISI 304 austenitic stainless steel in inorganic acid mixture[J].Anti-Corrosion Methods and Materials,1997,44(01):6-9.
[4] Barreau S;Morton J;Hermas A A .A correlation between phosphorous impurity in stainless steel and a second anodic current maximum in H2SO4[J].Corrosion Science,1999,41(12):2251-2266.
[5] 王再友,朱金华.亚稳奥氏体金属抗空蚀性能及其主要控制因素[J].金属学报,2003(03):273-277.
[6] 柳伟,郑玉贵,姚治铭,吴欣强,柯伟.清水和含沙水中20SiMn和0Cr13Ni5Mo钢的空蚀行为[J].金属学报,2001(02):197-201.
[7] Mann B S .Boronizing of cast martensitic chromium nickel stainless steel and its abrasion and cavitation - erosion behaviour[J].Wear,1997,208(01):125-131.
[8] N. D. Long;J. H. Zhu .Cavitation erosion resistance of Fe-26Mn-6Si-7Cr-1Cu shape memory alloy[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2003(12):1733-1736.
[9] C. T. Kwok;H. C. Man;F. T. Cheng .Cavitation erosion of duplex and super duplex stainless steels[J].Scripta materialia,1998(9):1229-1236.
[10] 骆素珍,敬和民,郑玉贵,姚治铭,柯伟.CrMnN双相不锈钢的空泡腐蚀行为研究[J].中国腐蚀与防护学报,2003(05):276-281.
[11] 王飚,王宇栋,张自华.电镀稀士铬提高水轮机的抗空蚀磨损能力[J].中国腐蚀与防护学报,2003(01):34-37.
[12] Kaesche H.The Corrosion of Metal[M].Berlin:Springer Press,1979
[13] Kaesche H.Die Korrosion der Metalle-Zweite Vollig neubearbeitete und erweiterte Auflage[M].Berlin:Springer,1979
[14] 耿承伟;何树生;于波.核电站用ZG0Cr13Ni4Mo马氏体不锈钢研制[J].物理测试,1992(04):13-25.
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