[1] ÇOLAK O.Optimization of machining performance in high-pressure assisted turning of Ti6Al4V alloy[J].Strojniskivestnik-Journal of Mechanical Engineering,2014,60(10):675-681. [2] EZUGWU E O.Key improvements in the machining of difficult-to-cut aerospace superalloys[J].International Journal of Machine Tools and Manufacture,2005(45): 1353-1367. [3] COURBON C,KRAMAR D,KRAJNIK P,et al.Investigation of machining performance in high-pressure jet assisted turning of Inconel 718: an experimental study[J].International Journal of Machine Tools and Manufacture,2009,49(14): 1114-1125. [4] KLOCKE F,SETTINERI L,LUNG D,et al.High performance cutting of gamma titanium aluminides: Influence of lubricoolant strategy on tool wear and surface integrity[J].Wear,2013,302(1): 1136-1144. [5] SIMA M,ZEL T.Modified material constitutive models for serrated chip formation simulations and experimental validation in machining of titanium alloy Ti-6Al-4V[J].International Journal of Machine Tools and Manufacture,2010,50(11): 943-960. [6] BRAHAM-BOUCHNAK T,GERMAIN G,MOREL A,et al.Influence of high pressure coolant assistance on the machinability of the titanium alloy Ti555-3[J].Machining Science and Technology,2015,19(1): 134-151. [7] 韦联,周利平.基于 Deform 3D 的金属车削过程仿真[J].工具技术,2010,44(8): 29-33. [8] 武文革,黄美霞.基于DEFORM-3D的高速车削加工仿真[J].现代制造工程,2009(11):91-94,24. [9] HU X L,AI X,WAN Y,et al.Flow stress modeling for aeronautical aluminum alloy 7050-T7451 in high-speed cutting[J].Transactions of Nanjing University of Aeronautics & Astronautics,2007,24(2): 139-144. [10] 夏亮亮,袁军堂,汪振华,等.基于DEFORM-3D的铝合金铣削力仿真与试验研究[J].机械设计与制造,2013(4):85-87. [11] 刘俊岩.水蒸汽作绿色冷却润滑剂的作用机理及切削试验研究[D].哈尔滨: 哈尔滨工业大学,2005. [12] GODLEVSKI V A,VOLKOV A V,LATYSHEV V N,et al.The kinetics of lubricant penetration action during machining[J].Lubrication Science,1997,9(2): 127-140. [13] LI X.Study of the jet-flow rate of cooling in machining Part 1.Theoretical analysis[J].Journal of Materials Processing Technology,1996,62(1/2/3): 149-156. [14] 叶斌,陶德华.环境友好润滑剂的特点及发展[J].润滑与密封,2002(5): 73-76. [15] KARMA A.Encyclopedia of materials science and technology[M].London: Elsevier Oxford,2001: 6873-6886. [16] 张蓉蓉,赵先锋,李长虹,等.基于Deform-3D的车削残余应力分析[J].组合机床与自动化加工技术,2016(5):22-24,28. [17] 杨世铭.传热学基础[M].北京:高等教育出版社,2006:202-204. [18] LI B.On the mechanism of chip breaking[J].Journal of Engineering for Industry,1979(101): 241. [19] WYATT J E,BERRY J T.A new technique for the determination of superficial residual stresses associated with machining and other manufacturing processes[J].Journal of Materials Processing Technology,2006,171(1): 132-140. [20] GOLDSTEIN R J,FRANCHETT M E.Heat transfer from a flat surface to an oblique impinging jet[J].ASME,Transactions,Journal of Heat Transfer,1988(110): 84-90. [21] KLOCKE F,DBBELER B,LUNG D.Energy Saving Potentials of High Pressure Lubricoolant Supply[J].Procedia CIRP,2015(26): 355-360. |