[1] Harris T A,Crecelius W J.Rolling bearing analysis[J].Wiley Interence,2001,265(1):10.1115/1.3261135. [2] Zaretsky,E V.Rolling bearing steels—A technical and historical perspective[J].Materials ence and Technology,2013,28(1):58-69. [3] Unigame Y,Hiraoka K,Takasu I,et al.Evaluation procedures of nonmetallic inclusions in steel for highly reliable bearings[J].Journal of ASTM International,2006,3(5):8. [4] 朱帅帅,王章忠,毛向阳,等.铁素体-珠光体型非调质钢强韧化技术研究进展[J].材料导报,2016,5(1):122-126. Zhu Shuaishuai,Wang Zhangzhong,Mao Xiangyang,et al.A review about strengthening-toughening technologies for ferrite-pearlite non-quenched and tempered steels[J].Materials Reports,2016,5(1):122-126. [5] 丁 洁,张英建,陈蕴博.控锻控冷对非调质钢38MnVS5 的组织影响[J].材料热处理学报,2006,27(2):35-38. Ding Jie,Zhang Yingjian,Chen Yunbo.Effect of composite thermo mechanical treatment on microstructure and properties of 38MnVS steel[J].Transactions of Materials and Heat Treatment,2006,27(2):35-38. [6] 蓝慧芳,杜林秀,刘彦春,等.控轧控冷工艺对高强度结构钢组织及力学性能的影响[J].东北大学学报(自然科学版),2009,30(2):200-204. Lan Huifang,Du Linxiu,Liu Yanchun,et al.Effect of TMCP parameters on microstructure and mechanical properties of high-strength structural steel[J].Journal of Northeastern University(Natural Science),2009,30(2):200-204. [7] 马正洪,张玺成,钱 萍.控轧工艺对无微合金低锰高强度钢筋晶粒细化的影响[J].金属热处理,2015,40(4):146-148. Ma Zhenghong,Zhang Xicheng,Qian Ping.Effect of TMCP on grain refinement for no micro-alloyed high strength low manganese reinforced bar[J].Heat Treatment of Metals,2015,40(4):146-148. [8] 梁 亮,邓想涛,王昭东,等.基于超快冷技术开发低合金高强度耐磨钢[J].材料热处理学报,2019,40(5):83-88. Liang Liang,Deng Xiangtao,Wang Zhaodong,et al.Development of low-alloy and high strength wear resistant steel based on ultra-fast cooling technology[J].Transactions of Materials and Heat Treatment,2019,40(5):83-88. [9] 陈华辉,梁 锐.控轧控冷对高强建筑用钢组织与性能的影响[J].金属热处理,2019,44(1):138-141. Chen Huahui,Liang Rui.Effect of controlled rolling and controlled cooling on microstructure and properties of high strength building steel[J].Heat Treatment of Metals,2019,44(1):138-141. [10] 王国栋.新一代控制轧制和控制冷却技术与创新的热轧过程[J].东北大学学报(自然科学版),2009,30(7):913-921. Wang Guodong.New generation TMCP and innovative hot rolling process[J].Journal of Northeastern University(Natural Science),2009,30(7):913-921. [11] 孙 强.控轧控冷对GCr15轴承钢网状碳化物的影响[D].大连:大连理工大学,2016. Sun Qiang.Effect of controlled rolling and controlled cooling on the network carbide of the GCr15 bearing steel[D].Dalian:Dalian University of Technology,2016. [12] 邓湘斌,胡昭锋,冯杰斌,等.终轧温度和冷却工艺对ø36 mm GCr15轴承钢网状碳化物的影响[J].特殊钢,2017,38(4):57-59. Deng Xiangbin,Hu Zhaofeng,Feng Jiebin,et al.Effect of end-rolling temperature and cooling process on carbide network in ø36 mm bearing steel GCr15[J].Special Steel,2017,38(4):57-59. |