• CN:11-2187/TH
  • ISSN:0577-6686

›› 2000, Vol. 36 ›› Issue (10): 99-103.

• 论文 • 上一篇    下一篇

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焊接热循环对Ti-V-Nb微合金钢中第二相粒子的影响

陈茂爱;孙文涛;唐逸民;楼松年;吴人洁   

  1. 山东大学材料学院;山东大学;上海交通大学
  • 发布日期:2000-10-15

EFFECT OF WELD THERMAL CYCLE ON PARTICLES IN Ti-Nb-V MICROALLOYED STEEL

Chen Maoai;Sun Wentao;Tang Yimin;Lou Songnian;Wu Renjie   

  1. Shandong University Shanghai Jiaotong Uiversity
  • Published:2000-10-15

摘要: 利用萃取复型技术,对Ti-V-Nb微合金钢母材及模拟粗晶区中第二相粒子的形态、数量及成分进行了研究。结果表明,经热循环后,母材中形状不规则的第二相粒子变为方形,粒子的数量显著减少、尺寸增大、粒子的成分亦发生显著变化。分析表明,t (8/5)(800℃至500℃冷却时间)对粒子在热循环过程中的行为特点具有重要的影响,t (8/5)较小时,热循环过程中粒子发生溶解及长大;t (8/5)较大时,粒子不仅发生溶解及长大,在冷却过程中还会重新析出一些第二相粒子。

关键词: 长大, 第二相粒子, 焊接热循环, 溶解, 再析出

Abstract: By using carbon extraction replica technology, the response of particle in Ti-Nb-V microalloyed X-60 Steel to Weld Thermal Cycle is investigated. Experiment results and analysis show that the particles in the steel change from irregular shape to cubicle one after thermal cycle. t8/5 has a great effect on the chemical composition, mean size and number per unit area of the particles after weld thermal cycle. When t8/5 change from 10s to 45s, all particles remain rich in Ti, the mean size increases and the number per unit area decreases, indicating that no re-precipitation occurs. When t8/5 changes from 45s to 120s, particles rich in Nb + V appear, the mean size decreases and the number per unit area increases, indicating that re-precipitation occurs in case of large t8/5.

Key words: Coarsening, Dissolution, Re-precipitation, Second phase particle, Weld thermal cycle

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