[1] Rahman M, Seah W K H, Teo T T. The machinability of Inconel 718. Journal of Materials Processing Technology, 1997, 63: 199-204.
[2] Dudzinski D, Devillez A, Moufki A, et al. A review of developments towards dry and high speed machining of Inconel 718 alloy. International Journal of Machine Tools & Manufacture, 2004, 44: 439-456.
[3] Ezugwu E O, Wang Z M, Machado A R. The machinability of nickel-based alloys: a review. Journal of Materials Processing Technology, 1999, 86: 1-16.
[4] 艾兴.高速切削加工技术.北京:国防工业出版社,2003: 9-67.
[5] 王殿龙,荀志峰,庞继有,等. K24镍基高温合金切削性能试验研究.中国机械工程,2002,38(增刊):190-193.
[6] Liu Weiwei, Zhu Lijian, Shan Chenwei, et al. Effect of cutting parameters on the cutting force in the end milling of GH4169 superalloy. The international conference on E-product. E-service and E-entertainment,2010(6): 3756-3759.
[7] 刘维伟,张拉拉,单晨伟,等.GH4169高温合金铣削力实验研究. 机械设计与制造,2011,(1)1:176-178.
[8] Schulz H, Moriwaki T. High-speed machining. Annals of the CIRP, 1992,41(2): 637-643.
[9] Muammer N, Abdullah A, Hasan, et al. The effect of cutting speed and cutting tool geometry on machinability priperties of Inconel718. Materials and Design, 2007, 28: 1334-1338.
[10] Nga E G, Leeb D W, Sharmana A R C, et al.High speed ball nose end milling of Inconel 718.CIRP Annals-Manufacturing Technology, 2000, 49(1): 41-46.
[11] 肖茂华,何宁,李亮,等. 陶瓷刀具高速切削镍基高温合金沟槽磨损试验研究. 中国机械工程,2008,(10)19: 1188-1192.
[12] 王素玉,赵军,艾兴,等. 高速切削表面粗糙度理论研究综述. 机械工程师,2004,(10): 3-6.
[13] 李云雁,胡传荣.试验设计与数据处理.北京:化学工业出版社,2005.
[14] 王素玉.高速铣削加工表面质量的研究[D].济南:山东大学,2006.
[15] Liu Weiwei, Gao Xiaojuan, Shan Chenwei, et al. Influence of cutter geometric parameters on the stability of milling process of thin-walled blades. 2010 2nd international conference on intellectual technology in industrial practice, 2010(1): 119-121.
[16] 任军学,罗远锋,姚倡锋.TC17钛合金高速铣削表面粗糙度及参数灵敏度研究.航空制造技术,2009,22:78-82.
[17] 杜随更,吕超,任军学,等. 钛合金高速铣削表面形貌及表层组织研究. 航空学报,2008,29(6):1710-1715.