广东工业大学学报 ›› 2012, Vol. 29 ›› Issue (2): 68-71.doi: 10.3969/j.issn.1007-7162.2012.02.013
摘要: 在铸造高速钢刀具中添加质量分数为4%的Nb形成孤立粒状碳化物以细化铸态组织,研究了不同固溶温度和回火温度下的组织和硬度.结果显示:固溶处理温度为1 200 ℃时,碳化物呈孤立粒状均匀分布;低于此温度,晶界上的羽毛状碳化物未能完全溶解,而高于此温度则导致粒状NbC的溶解.回火温度为570 ℃到580 ℃时,可获得细针状马氏体和最少量的残余奥氏体;低于此温度,针状马氏体粗大,残余奥氏体量较多.
[1] 李彦军,何镇明,姜启川,等.铸造高速钢刀具的生产工艺及组织、性能的改善[J].工具技术,1997,31(6):7-10. Li Yan-jun, He Zhenming, Jiang Qichuan et al. Cast HSS Cutters: Production Technology and Improve of Structure and Performance[J].Tool Technology,1997,31(6):710.[2] 吉林大学物理系金属物理专业精密铸造厂.熔模精密铸造高速钢刀具的组织和性能[J].吉林大学学报:理学版,1974(3):60-67. Precision Casting Factory, Department of Physics, Jilin University. Structure and Performance of Cast HSS Cutter by Lost wax Process[J]. Journal of University of Jilin(Physics version),1974(3):60-67.[3] 上海刀具厂.壳型铸造高速钢刀具[J].铸造,1974(4):40-41. Shanghai Cutter Factory. Cast HSS Cutter by Shell Mold Process[J].Foundry,1974(4):40-41.[4] Barkalow R H, Kraft R W, Goldstein J I. Solidification of M2 High Speed Steel[J]. Metallurgical Transactions, 1972(3):919-926. |
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