金属热处理 ›› 2023, Vol. 48 ›› Issue (6): 277-280.DOI: 10.13251/j.issn.0254-6051.2023.06.046

• 测试与分析 • 上一篇    下一篇

DT4C电工纯铁套筒零件矫顽力不合格工艺改进

赵金龙, 任卫斌, 李剑玉   

  1. 中国空空导弹研究院, 河南 洛阳 471003
  • 收稿日期:2022-12-01 修回日期:2023-04-04 发布日期:2023-08-11
  • 作者简介:赵金龙(1989—),男,工程师,学士,主要研究方向为金属材料热处理,E-mail:13938814518@139.com

Process improvement for coercivity nonconformity of DT4C electrical iron sleeve parts

Zhao Jinlong, Ren Weibin, Li Jianyu   

  1. China Airborne Missile Academy, Luoyang Henan 471003, China
  • Received:2022-12-01 Revised:2023-04-04 Published:2023-08-11

摘要: 某批次DT4C电工纯铁套筒零件采用真空氢气退火炉经900 ℃中温退火后矫顽力不合格, 对其退火工艺进行了研究。结果表明, 采用1120 ℃×4 h+900 ℃×4 h两次退火后, DT4C电工纯铁试棒矫顽力及晶粒度等级较900 ℃×4 h退火明显降低, 且1120 ℃→900 ℃过程中试棒不同冷速下的矫顽力均合格且差别不大, 冷速可达到240 ℃/h, 提高了零件的加工效率。不合格批套筒零件经两次退火后的矫顽力均达到HB/Z 5015—1994要求。

关键词: DT4C电工纯铁, 矫顽力, 晶粒度, 退火, 冷却速度

Abstract: Annealing process was studied in order to solve the coercivity nonconformity problem of DT4C electrical iron sleeve parts after annealing by vacuum hydrogen annealing furnace at 900 ℃. The results show that after 1120 ℃×4 h + 900 ℃×4 h two-stage annealing, the coercivity and grain size of the tested rod are significantly reduced compared with 900 ℃×4 h annealing, and the coercivity at different cooling rates during the process from 1120 ℃ to 900 ℃ is qualified and the difference is not significant. And the cooling rate reaches 240 ℃/h, the processing efficiency of the parts can be improved. The coercivity of unqualified batch sleeve parts after two-stage annealing meets the requirements of HB/Z 5015—1994.

Key words: DT4C electrical iron, coercivity, grain size, annealing, cooling rate

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