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热输入对Q890高强钢焊缝组织及性能的影响 被引量:6

Effect of heat input on microstructure and performance of weld metal for Q890 high strength steel
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摘要 针对国内某钢厂最新研制的Q890高强钢,采用三种不同的热输入对其进行气体保护焊接,研究了不同热输入对焊缝金属组织、硬度及冲击韧性的影响.结果表明,3种热输入下,焊缝组织主要以板条贝氏体为主,并含有粒状贝氏体、少量的板条马氏体和残余奥氏体.随着热输入的增大,焊缝组织中贝氏体铁素体板条粗化,板条马氏体逐渐减少,而粒状贝氏体逐渐增多,部分残余奥氏体由薄膜状向块状转变;焊缝金属硬度随着热输入的增大而下降;焊缝金属的冲击韧性亦呈逐渐下降的趋势. Welding tests were carried on the newly developed Q890 high strength steel with three different heat inputs, adopting gas shielded welding method. This paper mainly investigated the effect of different heat inputs on microstrueture, hardn metal mainly consists of tained austenite for three ess and impact toughness of weld metal. The results reveal that microstructure of weld lath bainite, as well as granular bainite, a small amount of lath martensite and rekinds of heat input. With the increasing of heat input, the lath of bainite ferritic in weld metal is coarsened, lath martensite decreases gradually, while the number of granular bainite increases, and topographies of retained austenite is changed from thin film to block. With the increasing of heat input, hardness of weld metal is reduced gradually. With the increasing of heat input, there seems to be a downward trend for impact toughness.
出处 《材料科学与工艺》 EI CAS CSCD 北大核心 2013年第5期143-148,共6页 Materials Science and Technology
关键词 Q890高强钢 热输入 焊缝金属 板条贝氏体 Q890 high strength steel heat input weld metal lath bainite
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  • 1胡燕慧,杜林秀,高彩茹,刘相华,李洪斌,韩伟.500MPa级超级钢工业实验[J].钢铁,2004,39(10):54-58. 被引量:10
  • 2史耀武,韩准祥.工程机械用800MPa低合金高强度钢焊接接头断裂韧性评价[J].热加工工艺,2006,35(11):13-17. 被引量:6
  • 3Jang J, Lee J S, Ju J B, et al. Determination of microstructural criterion for cryogenic toughness variation in actual HAZs using microstructure - distribution maps [ J ]. Materials Science and Engineering A, 2003, 351 (1/2) : 183 - 189.
  • 4Bayraktar E, Kaplan D. Mechanical and metallurgical investigation of martensite-austenite constituents in simulated welding conditions[J]. Journal of Materials Processing Technology 2004, 153 -154(10) : 87-92.
  • 5Chen J H, Ikuta Y K, Araki T, et al. Micro-fracture behavior induced by M-A constituent (island martensite) in simulated welding heat affected zone of HT80 high strength low alloyed steel[ J]. Acta Materialia, 1984, 32(10) : 1779 - 1788.
  • 6IKAWA H, OSHIGE H, TANOUE T. Study on the martensite-austenite constituent in weld-heat affected zone of high strength steel[J]. Journal of the Japan Welding Society, 1980, 49(7):467-472.
  • 7KIM K J, SCHWARTZ L H. Effects of intercritical tempering on the impact energy of Fe-9Ni-0.1C[J]. Material Science and Engineering, 1978, 33(1):5-20.
  • 8TAMURA H, ONZAWA T, UEMATSU S, et al. Retained austenite in cryogenic steel welds. Report 1: Notch toughness and retained austenite in 9%Ni steel welds using matched ferritic filler metals[J]. Journal of the Japan Welding Society, 1979, 48(11):931-936.
  • 9TAMURA H, ONZAWA T, UEMATSU S. Studies on retained austenite in cryogenic steel welds. Report 2: Retained austenite and notch toughness in synthetic HAZ of 9%Ni steel[J]. Journal of the Japan Welding Society, 1980, 49(12):854-860.
  • 10TAMURA H, ONZAWA T, UEMATSU S. Notch toughness and retained austenite in synthetic HAZ of 9%Ni steel[J]. Transactions of the Japan Welding Society. 1982, 13(1):51-58.

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