期刊文献+

两次预冷处理改善马氏体不锈钢3Cr17Mo球化组织的工艺研究 被引量:1

A Study of Process on Spheroidizing Structure of Martensite Stainless Steel 3Cr17Mo Improved by Double Pre-Cooling Heat Treatment
下载PDF
导出
摘要 针对退火3Cr17Mo钢(/%:0.25C,16.5Cr,0.60Mn,0.60Si,1.0Mo,0.020P,0.005S)碳化物偏聚现象,对预冷加热温度(870~960℃油冷至450℃),预冷次数(1~4),保温时间(1~4h)对该钢组织影响进行正交试验和离散数据分析,以研究反复预冷热处理对3Cr17Mo钢球化组织的影响。得出900~910℃两次预冷热处理可减少热处理时间和得出均匀细小碳化物组织。通过两次900~910℃30 min油冷至450℃+730℃2h退火炉冷至400℃空冷的试验表明,预冷处理工艺较860℃4h,炉冷至500℃空冷的常规退火工艺钢中球化碳化物分布更均匀、细小,综合力学性能明显提高。 According to the phenomenon of segregation and conglomeration of carbides in annealed steel 3Cr17Mo(/% : 0. 25 C, 16. 5 Cr, 0. 60 Mn, 0. 60 Si, 1. OMo, 0. 020 P, 0. 005 S), the orthogonal experiments and discrete data analysis on effect of pre-cooling heating temperature( 870 ~960℃, oil-cooling to 450 ℃), pre-cooling times( 1 ~ 4) and holding time(1 ~ 4 h) on structure of steel have been carried out to study the effect of repeated pre-cooling heat treatment on spheroidizing structure of steel 3Cr17Mo. It is obtained that 900 ~910℃ double pre-cooling heat treatment is available to decrease the time of heat treatment and get structure with uniform and fine carbides. The test results show that as compared with normal annealing process-860 ℃ for 4 h, furnace cooling to 500℃, air cooling, the spheroidizing carbides in steel with double 900 ~ 910℃ for 30 min,oil-cooling to 450 ℃ annealing at 730 ℃2 h and furnace cooling to 400 ℃air cooling is more uniform and fine, its comprehensive mechanical properties improve obviously.
出处 《特殊钢》 北大核心 2017年第6期63-66,共4页 Special Steel
基金 河南省教育厅高等学校重点科研项目(15A460027)
关键词 马氏体不锈钢3Cr17Mo 碳化物球化组织 预冷热处理 等温球化退火 Martensite Stainless Steel 3Cr17Mo Carbide Spheroidizing Structure Pre-Cooling Heat Treatment Isothermal Spheroidizing Annealing
  • 相关文献

参考文献8

二级参考文献33

  • 1孙朝阳,曾攀,雷丽萍,方刚.基于物理模拟的相变塑性应变分离方法[J].塑性工程学报,2007,14(6):161-165. 被引量:3
  • 2米正仓.Crl2MoV钢碳化物与接触疲劳[J].物理测试,1989(2):20-21. 被引量:1
  • 3冯晓曾.提高模具寿命指南[M].北京:机械工业出版社,1998..
  • 4U Seker, I Ciftei, H Hasirei. The effect of alloying elements on surface roughness and cutting forces during machining of ductile iron[J]. Materials and Design,2003, 24:47-51.
  • 5S Katayama, M Hashimara. Effect of carbon, phosphorus and nitrogen contents in steels on machined surface and cutting force[J]. ISIU international, 1990, 30 (6): 457- 463.
  • 6S Katayama, M Hashimara. Three effects of heat treatment on the machinability of mild steels [J]. Journal of Materials Processing Technology, 2003,136 : 227-238.
  • 7H W Wagener, J Haats. Cold extrusion and machinability of free-machining steels[J]. Journal of Materials Processing Technology, 1990,24:235-244.
  • 8Yan H T, Bi H Y, Li X, et al. Effect ot two-step cold rolling and annealing on texture, grain boundary character distribution and r-value of Nb + Ti stabilized ferritic stainless steel[J]. Materials Characterization, 2009,60(1) :65 - 68.
  • 9Yazawa Y, Ozaki Y, Kato Y, et al. Development of ferritic stainless steel sheets with excellent deep drawability by {111} recrystallization texture control [J]. JSAE Review, 2003,24 (4) :483 - 488.
  • 10Sawatani T, Shimizu K, Nakayama T, et al. The r-values and recrystallized textures of Ti-stabilized low C, N-17% Cr stainless steel[J]. Transactions ISIJ, 1978, 18 ( 11 ) : 676 - 685.

共引文献51

同被引文献9

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部