WANG Yu-gang, PEI Shao-yong, XIU Shi-chao. Simulation and Experimental Research on Airflow Movement Characteristics of Grinding Zone[J]. Journal of Northeastern University Natural Science, 2015, 36(1): 91-94.
[1]Morgan M N,Jackson A R,Wu H,et al.Optimization of fluid application in grinding[J].CIRP Annals—Manufacturing Technology,2008,57(1):363-366. [2]Garcia E,Pombo I,Sanchez J A,et al.Reduction of oil and gas consumption in grinding technology using high pour-point lubricants[J].Journal of Cleaner Production,2013,51(6):99-108. [3]修世超,李长河,庞子瑞,等.快速点磨削磨削液射流特性及喷嘴极限位置研究[J].东北大学学报:自然科学版,2007,28(3):393-396.(Xiu Shi-chao,Li Chang-he,Pang Zi-rui,et al.Study on properties of grinding fluid jet and nozzle position limit during quick point grinding[J].Journal of Northeastern University:Natural Science,2007,28(3):393-396.) [4]Klock F,Baus A,Beck T.Coolant induced forces in CBN high speed grinding with shoe nozzles[J].CIRP Annals—Manufacturing Technology,2000,49(1):241-244. [5]Ebbrell S,Wooley N H,Tridimas Y D,et al.The effects of cutting fluid application methods on the grinding process[J].International Journal of Machine Tools & Manufacture,2000,40(2):209-223. [6]Ramesh K,Huang H,Yin L.Analytical and experimental investigation of coolant velocity in high speed grinding[J].International Journal of Machine Tools & Manufacture,2004,44(10):1069-1076. [7]Hryniewicz P,Szeri A Z,Jahanmir S.Application of lubrication theory to fluid flow in grinding:part I—flow between smooth surfaces[J].Journal of Tribology,2001,123(1):94-100. [8]Alberdi R,Sanchez J A,Pombo I,et al.Strategies for optimal use of fluids in grinding[J].International Journal of Machine Tools & Manufacture,2011,51(6):491-499. [9]Zheng J Y,Jiang Z F,Zhao L.Specific properties of air flow field within the grinding zone[J].Journal of Wuhan University of Technology,2006,1(S1):307-309.