[1] CHEN Ming,XU Jinying,LIU Zhiqiang,et al.Machinability Study on Hard Milling of Ultra-High Strength Steel 30Cr3SiNiMoVA[J].Advanced Materials Research,2012,565:496-502.
[2] 胡春东,孟利,董瀚.超高强度钢的研究进展[J].材料热处理学报,2016,37(11):178-183.
[3] 邓朝晖,刘战强,张晓红.高速高效加工领域科学技术发展研究[J].机械工程学报,2010,46(23):106-120.
[4] DUAN Chunzheng,WANG Minjie.Some Metallurgical Aspects of Chips Formed in High Speed Machining of High Strength Low Alloy Steel[J].Scripta Materialia,2005,52(10):1 001-1 004.
[5] 龙震海,王西彬,刘志兵.(Ti,Al)N涂层硬质合金刀具高速铣削30CrNi4MoV钢时的磨损机理[J].北京理工大学学报,2004,24(11):942-946.
[6] 张慧萍,张庆宇,张校雷,等.高速铣削超高强度钢的切削力及表面粗糙度研究[J].工具技术,2017,51(8):13-15.
[7] WANG Changying,TIAN Jiajin,AN Qinglong,et al.Numerical Investigation on Effect of Rounded Cutting Edge Radius in Milling of Ultra-High-Strength Steel 30Cr3SiNiMoVA[J].Advanced Materials Research,2013,797:202-207.
[8] QIU Kun,LONG Zhenhai.Residual Stress Profile of Ultra High Strength Low Alloy Steel Induced by High Speed Milling Process[J].Advanced Materials Research,2013,658:188-193.
[9] 刘战强,万熠,周军.高速切削刀具材料及其应用[J].机械工程材料,2006,30(5):1-4.
[10] PENG Ying,MIAO Hezhou,PENG Zhijian.Development of TiCN-Based Cermets:Mechanical Properties and Wear Mechanism[J].International Journal of Refractory Metals & Hard Materials,2013,39(7):78-89.
[11] 张勇,程寓,胡瀚彭,等.基于微波烧结的Ti(C,N)/Al2O3金属陶瓷刀具切削淬硬钢的试验研究[J].工具技术,2017,51(3):19-22.
[12] 周研,张杰,杨海东,等.高速干切削时金属陶瓷刀具磨损的试验研究[J].工具技术,2007,41(2):36-37.
[13] 赵立新,郑立允.TiN/TiAlN涂层Ti(C,N)基金属陶瓷刀具的切削性能[J].金属热处理,2009,34(2):18-20. |