重庆理工大学学报(自然科学) ›› 2023, Vol. 37 ›› Issue (9): 150-157.

• 机械·材料 • 上一篇    下一篇

激光焊接及热处理对聚变堆用 CLF1钢微观组织影响的研究

缑 俊,王平怀,朱小波   

  1. (1.核工业西南物理研究院,成都 610041; 2.重庆理工大学 材料科学与工程学院,重庆 400054)
  • 出版日期:2023-10-17 发布日期:2023-10-17
  • 作者简介:缑俊,男,硕士,主要从事聚变堆低活化铁素体、马氏体钢激光焊接研究,Email:goujun@swip.ac.cn;通信作者 王平怀,男,博士,研究员,主要从事 ITER第一壁加工制造以及聚变堆结构材料研究,Email:wangph@swip. ac.cn。

Effect of laser welding and heat treatment on the microstructure of CLF-1 steel for fusion reactor

  • Online:2023-10-17 Published:2023-10-17

摘要: :采用已优化激光焊接工艺对6mm厚 CLF1钢进行拼焊并进行焊后回火热处理,使 用电子通道衬度和电子背散射衍射等方法对样品性能进行表征,研究了 CLF1钢的焊态、回火 态微观组织结构演变。结果表明:焊态焊缝区域为 α′Fe单相位错马氏体组织,相变马氏体遵 循 KS取向关系与 NW取向关系;热处理后 M23C6相在马氏体变体内部和界面处析出,有效降低 了马氏体变体内部的取向差,但未对马氏体变体位相产生明显影响。显微硬度测试结果表明 CLF1钢焊缝区域显微硬度为 358HV0.2;焊后热处理将焊缝的显微硬度降至约 258HV0.2,实现 了良好的去应力指标。

关键词: CLF1钢, 激光焊接, 马氏体变体, 取向差

Abstract: The optimized laser welding process was used to weld the 6mm thick CLF-1 steel and subsequent weld tempering heat treatment. The sample were characterized by electron channel contrast and electron backscatter diffraction, and the microstructure evolution of as-weld and tempered CLF-1 steel was studied. The results show that as-weld area mainly consist of α′-Fe single phase dislocation martensite structure, transformation martensite follows KS and NW orientation relationship; After post weld heat treatment, M23C6 phase precipitated in the interior and interface of martensite variant respectively. Post weld heat treatment can effectively reduced the orientation difference in the interior of martensite variant, but it have little effect on the martensite phase. The microhardness test results show that the microhardness of the as-weld area of CLF-1 steel is 358HV0.2 and the microhardness of the weld significantly reduce to 258HV0.2 after post weld heat treatment. At last, a good stress removal index can be obtained by tempering treatment.

中图分类号: 

  • TG456.7