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低合金耐热钢焊接材料及接头性能的现状及发展趋势 被引量:9

Present Status and Developmental Trend of Welding Material and Welding Joint of Low-alloy Heat-resistant Steels
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摘要 介绍了低合金耐热钢焊接材料及接头性能的研究现状及2个发展趋势。阐述了焊材中合金元素(如Cr,Mo,Ti,V,Nb等)对焊缝组织和性能的影响以及新型低合金耐热钢焊接材料的研制;对焊接接头长期在高温高压下容易出现再热裂纹和蠕变裂纹这2种现象进行了分析;讨论了热处理工艺对低合金耐热钢焊接接头性能影响。 Present status and developmental trend of welding material and welding joint property of heat-resistant steels in domestic and overseas are mainly introduced. The importance of alloying agent and the development of neotype welding materials are emphasized. It is pointed out that under high temperature and pressure reheat cracking and creep cracking will appear in the welding joint. This article discusses the effects of heat treatment technology on welding joint.
出处 《新技术新工艺》 2007年第5期11-15,共5页 New Technology & New Process
关键词 低合金耐热钢 焊接材料 接头性能 low-alloy heat-resistant steels, welding material, welding joint property
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参考文献35

  • 1Lundin C D. Dissimilar metal weld-transition joints literatnre review[J]. Welding, 1982,61(2): 58-63.
  • 2Kluch R L,King J F. Austenitic stainless steel-ferritic steel weld joint failures [J]. Welding J, 1982, 61(9): 302- 311 .
  • 3Pavlovsky J,Million B,Ciha K, et al. Carbon redistribution between an austenitic cladding and a ferritic steel for pressure vessel of a nuclear reactor [J]. Mater Sci Eng 1991, A149: 105-110.
  • 4Holko K H, Li C C. Dissimilar weld failure analysis and development program. Gatlinburg,International conference on weld technology for energy application (conf. proc.) Tennessee, 1982: 641-672.
  • 5王来,王立刚,韩双起,李人文.焊接低碳Cr-Mo珠光体耐热钢的新型焊接材料的研究[J].石油化工设备技术,2003,24(5):48-52. 被引量:2
  • 6Japanese Patent. Patent Number: JP2004337871-A.
  • 7Japanese Patent. Patent Number: JP2003019595-A.
  • 8Murugananth M, Bhadeshla H K D H. Components of the Creep Strength of Welds. 6th International Trends in Welding Research Conference Proceedings, 2002.
  • 9Japanese Patent. Patent Number: JP2002001579-A.
  • 10Japanese Patent. Patent Number: JP2004230404-A.

二级参考文献26

  • 1孙咸.不锈钢焊条脱渣性影响因素研究[J].焊接,1994(5):2-6. 被引量:11
  • 2刘江龙,丁培道,左铁镛.环境协调材料的现状及其发展[J].材料导报,1995,9(3):6-11. 被引量:16
  • 3黄明亮.[D].大连:大连理工大学,1995.
  • 4董贵昕.[D].大连:大连理工大学,1997.
  • 5中国机械工程学会焊接学会第V焊接委员会.焊接卫生与安全[M].北京:机械工业出版社,1987..
  • 6C D Lundin. Dissimilar metal weld-- transition joints literature review [J].Welding J, 1982,61 (2) : 58s- 63s.
  • 7R L Klueh,J F King. Austenitic stainless steel--ferritic steel weld joint failures [J].Welding J, 1982,61(9) :302s-311s.
  • 8J Pavlovsky,B Million,K Ciha and K Stransky. Y J,Carbon redistribution between an austenitic clading and a ferritic steel for pressure vessel of a nuclear reactor []. Mater Sci Eng, 1991 ,A149 : 105- 110.
  • 9K H Holko, C C Li. Dissimilar weld failure analysis and development program. International conference on weld technology for energy application (conf. proc. )Gatlinburg,Tennessee, May 16- 19,1982:641-672.
  • 10Huang M L, Wang L. Carbon migration in 5Cr- 0. 5Mo/21Cr- 12Ni dissimilar metal welds [J]. Metall Trans, 1998, A29.

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