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Ti-V-Nb微合金钢焊接热影响区中的沉淀物 被引量:3

Precipitates in HAZ of Ti-V-Nb microalloy steels
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摘要 本文对5种含Ti-V-N_b的微合金钢埋弧自动焊焊接热影响区中沉淀物溶解、沉淀及晶粒长大进行了考察。焊接线能量为3和6 kJ/mm.Ti钢(0.014%T_i)焊接中TiN粒子变化很少,与焊接热循环中TiN很有限的溶解计算结果相吻合.低Ti-V钢(0.002%Ti,0.093%V)和低Ti-Nb钢(0.002%Ti,0.029%Nb)中富V和富Nb粒子分别在母材中溶解,富Ti沉淀物在热循环的加热段形成,而富V粒子和富Nb粒子又在冷却段再沉淀.Ti-V钢(0.014%Ti,0.080%V)和Ti-V-Nb钢(0.016%Ti,0.082%V,0.027%Nb)中沉淀物粒子成分分布在较宽的范围内.焊接时富Ti立方体状沉淀物不溶解而富V、富Nb球状粒子溶解了.这两种钢冷却时无明显再沉淀。研究的5种钢的这些不同表现是与母材中沉淀物的溶解及冷却时发生的再沉淀可获得的热力学动力分不开的. The dissolution, precipitation and grain coarsening of precipitates in the HAZ of submerged are welds deposited at 3kJ/mm and 6kJ/mm heat input on five Ti, V,Nb containing microalloy steels were examined.The Ti-bearing steel (0.014% Ti) showed little change in the TiN particle distribution on welding, being in agreemetn with the calculated result of very limited TiN solution during the weld thermal cycle.For low Ti-V steel (0.002% Ti,0.093% V)and low Ti-Nb steel (0.002%Ti, 0.029% Nb),the V-rich particles and the Nb-rich particles in the base metal dissolved.During the heating leg of the cycle the Ti-rich particles formed,while on cooling,the V-rich and the Nb-rich particles precipitated again.Ti-V steel (0.014% Ti,0.08%V)and Ti-V-Nb steel (0.016% Ti,0.082% V,0.027% Nb) contained a wide distribution of particle compositions.On welding,the Ti-rich cuboidal precipitates did not dissolve while the V-rich and the Nb-rich spheroidal precipitates did dissolve.No reprecipitation was abserved on cooling in these two steels. The different behaviour of thc five steels was related to the dissolution of the precipitation in the basc metal and the available thermodynamic driving foree for reprecipitation on cooling.
作者 王国荣
机构地区 华南理工大学
出处 《焊接学报》 EI CAS CSCD 北大核心 1991年第2期81-88,共8页 Transactions of The China Welding Institution
关键词 高强度钢 焊接 热影响区 沉淀物 precipitates high-strength steel HAZ
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参考文献1

  • 1Howard B. Aaron,Gerald R. Kotler. Second phase dissolution[J] 1971,Metallurgical Transactions(2):393~408

同被引文献13

  • 1谢振翔.低碳钢水下湿法接热循环对接头组织和机械性能影响研究[M].华南理工大学[硕士论文],1986.16-31.
  • 2谢群集.水下局部干法药皮焊条手弧焊的研究[M].华南理工大学[硕士论文],1990.20-23.
  • 3陈伯蠡.焊接冶金原理[M].北京:清华大学出版社,1989.297.
  • 4Farrar R G, Harrimn P L . Review: acicular ferrite in carbon-manganese weld metals: an overview. Journal of Materials Science, 1987,22 (12) : 3812- 3820.
  • 5Evans G M. Effects of carbon on the micrcrstructure and properties of C-Mn all-weld deposits. Welding Journal, 1980,59(1) : 67- 75.
  • 6谢群集,硕士学位论文,1990年,20页
  • 7唐国翌,金属学报,1989年,25卷,4期,311页
  • 8谢振翔,硕士学位论文,1986年,16页
  • 9石永华,王国荣.微合金高强钢水下焊接CGHAZ中的沉淀物[J].华南理工大学学报(自然科学版),1999,27(9):25-31. 被引量:2
  • 10杜则裕,张德勤,田志凌.低碳低合金钢焊缝金属的显微组织及其影响因素[J].钢铁,1999,34(12):67-71. 被引量:29

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