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新型刀具用钢的热处理工艺及微观组织
引用本文:段文峰,石全强,李积回,何玲,范倚豪,邵品,严伟. 新型刀具用钢的热处理工艺及微观组织[J]. 金属热处理, 2021, 46(8): 156-163. DOI: 10.13251/j.issn.0254-6051.2021.08.029
作者姓名:段文峰  石全强  李积回  何玲  范倚豪  邵品  严伟
作者单位:1.辽宁科技大学 材料与冶金学院, 辽宁 鞍山 114051;2.中国科学院金属研究所 师昌绪先进材料创新中心, 辽宁 沈阳 110016;3.中国科学院金属研究所 中国科学院核用材料与安全评价重点实验室, 辽宁 沈阳 110016;4.阳江十八子刀剪制品有限公司, 广东 阳江 529500
基金项目:阳江市科技局(2019016);中国科学院创新促进会项目(2017233)
摘    要:采用不同淬回火工艺系统地研究了一种高碳高铬马氏体刀具用钢—SIMR的热处理工艺和微观组织,通过XRD、SEM和TEM等表征方法,分析测试了不同淬火温度和回火温度下SIMR刀具用钢的微观组织、碳化物形貌与分布和显微硬度等,获得了SIMR的最佳热处理工艺.结果表明,SIMR刀具用钢的晶粒尺寸随着淬火温度的升高而逐渐增大,冶...

关 键 词:SIMR刀具用钢  热处理工艺  显微组织  硬度
收稿时间:2021-04-05

Heat treatment process and microstructure of a new SIMR tool steel
Duan Wenfeng,Shi Quanqiang,Li Jihui,He Ling,Fan Yihao,Shao Pin,Yan Wei. Heat treatment process and microstructure of a new SIMR tool steel[J]. Heat Treatment of Metals, 2021, 46(8): 156-163. DOI: 10.13251/j.issn.0254-6051.2021.08.029
Authors:Duan Wenfeng  Shi Quanqiang  Li Jihui  He Ling  Fan Yihao  Shao Pin  Yan Wei
Abstract:The heat treatment process and microstructure of the SIMR, a high carbon and high chromium martensitic tool steel, were systematically studied by different quenching and tempering processes. Microstructure, morphologies and distribution of carbides and micro-hardness of the SIMR tool steel were researched by means of XRD, SEM, and TEM characterization methods, and the optimum heat treatment of the SIMR tool steel was obtained. The tested results show that the grain size of the SIMR tool steel gradually grows with the increase of quenching temperature, and the chromium-rich M7C3 type primary carbide which forms during the smelting solidification process, gradually re-dissolves with the increase of quenching temperature, and the micro-hardness increases first and then decreases. When the tempering temperature is between 150 ℃ and 300 ℃, the optimum heat treatment process for the SIMR tool steel is quenching at 1050 ℃ for 20 min, and then oil quenching, finally tempering at 150 ℃ for 90 min and then air cooling.
Keywords:SIMR tool steel  heat treatment process  microstructure  hardness  
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