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06Cr19Ni10不锈钢焊接水箱腐蚀失效分析 被引量:1

Corrosion failure analysis of 06Cr19Ni10 stainless steel welded water tank
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摘要 06Cr19Ni10不锈钢焊接水箱注水试验3个月即发生腐蚀并穿孔漏水。通过对水质与成分、金相组织、腐蚀孔SEM形貌、TEM微观结构、X射线衍射、电化学分析与点蚀模拟试验,研究了该水箱发生腐蚀穿孔的原因,并对06Cr19Ni10不锈钢的点蚀机理进行了分析探讨。结果表明:母材的Ecorr低于焊接飞溅是导致水箱发生点蚀的首要原因;形变诱发的马氏体对06Cr19Ni10热轧不锈钢水箱的抗点蚀性能影响不利;条状铁素体及板条状马氏体位错缠结是腐蚀沿轧制方向呈纤维状的主要原因。 Corrosion and leakage occurred on the 06Cr19Ni10 stainless steel welded water tank after three months of water injection test. The factors causing corrosion and leakage were investigated by water quality and water tank material inspection,microstructure analysis,observation of corrosion hole SEM morphology,TEM observation,XRD observation,polarization curve analysis and pitting corrosion simulation experimentation,and the pitting mechanism of 06Cr19Ni10 stainless steel was analyzed and discussed. The results show that the lower corrosion potential of base metal than that of welding spatter is the primary reason for the occurrence of pitting corrosion. Additionally the presence of deformation-induced martensite has an adverse effect on the pitting corrosion performance of the 06Cr19Ni10 hot-rolled stainless steel water tank. The filamentary corrosion along the rolling direction is mainly caused by ferrite and dislocation tangling zone of lath martensite.
作者 郑自芹 梁景恒 张大江 滕全全 徐智宝 王萌 于壮壮 ZHENG Ziqin;LIANG Jingheng;ZHANG Dajiang;TENG Quanquan;XU Zhibao;WANG Meng;YU Zhuangzhuang(Ningbo Branch of Chinese Academy of Ordnance Science,Yantai 264003,China)
出处 《兵器材料科学与工程》 CAS CSCD 北大核心 2022年第4期120-124,共5页 Ordnance Material Science and Engineering
关键词 06Cr19Ni10不锈钢焊接水箱 点蚀 电位差 形变诱发马氏体 06Cr19Ni10 stainless steel welded water tank pitting corrosion potential difference deformation induced martensite
作者简介 第一作者:郑自芹,男,硕士,副研究员,主要从事金属材料焊接工艺及材料可靠性研究。E-mail:247088851@qq.com。
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  • 1贾思洋,孙成,王佳,许进,朱景龙,王帅,张峰.剥离涂层下管线钢腐蚀研究进展[J].腐蚀科学与防护技术,2007,19(3):211-214. 被引量:6
  • 2C.S. Paglia,R.G. Buchheit.A look in the corrosion of aluminum alloy friction stir welds[J]. Scripta Materialia . 2007 (5)
  • 3B. Zaid,D. Saidi,A. Benzaid,S. Hadji.Effects of pH and chloride concentration on pitting corrosion of AA6061 aluminum alloy[J]. Corrosion Science . 2008 (7)
  • 4Monica Trueba,Stefano P. Trasatti.Study of Al alloy corrosion in neutral NaCl by the pitting scan technique[J]. Materials Chemistry and Physics . 2010 (3)
  • 5VARGEL C,JACQUES M,SCHMIDT M P.Corrosion of aluminum. . 2004
  • 6Kamal El-Menshawy,Abdel-Wahab A. El-Sayed,Mohammed E. El-Bedawy,Hafez A. Ahmed,Saed M. El-Raghy.??Effect of aging time at low aging temperatures on the corrosion of aluminum alloy 6061(J)Corrosion Science . 2011
  • 7Da-Quan Zhang,Jin Li,Hyung Goun Joo,Kang Yong Lee.??Corrosion properties of Nd:YAG laser–GMA hybrid welded AA6061 Al alloy and its microstructure(J)Corrosion Science . 2009 (6)
  • 8A. Astarita,C. Bitondo,A. Squillace,E. Armentani,F. Bellucci.??Stress corrosion cracking behaviour of conventional and innovative aluminium alloys for aeronautic applications(J)Surf. Interface Anal. . 2013 (10)
  • 9Birbilis, N.,Buchheit, R.G.Investigation and discussion of characteristics for intermetallic phases common to aluminum alloys as a function of solution pH. Journal of the Electrochemical Society . 2008
  • 10Birbilis, N.,Buchheit, R.G.Electrochemical characteristics of intermetallic phases in aluminum alloys : An experimental survey and discussion. Journal of the Electrochemical Society . 2005

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