[1]
F. Klocke and G. Eisenblatter : Dry Cutting, Annals of CIRP, Vol.46, No.2, pp.519-526 (1997).
DOI: 10.1016/s0007-8506(07)60877-4
Google Scholar
[2]
S. Okumura, K. Yokogawa, S. Shimizu and M. Yokogawa : Study on Cooling Air Grinding Performance by Cooling Air Dressing, J. of SGE, Vol.42, No.10, pp.424-429 (1998) (in Japanese).
Google Scholar
[3]
A. Yui and M. Terashima : Development of Coolant-less Grinding System, Abrasive Technology - Current Development and Applications I -, World Scientific, P.394-399 (1999).
DOI: 10.1142/9789812817822_0053
Google Scholar
[4]
U. Heisel, M. Lutz, D. Spath, R. Wassmer and U. Walter : Application of Minimum Quantity Cooling Lubrication Technology in Cutting Process, Production Engineering, Vol.2, No.1, pp.49-54 (1994).
Google Scholar
[5]
H. Sato, I. Inasaki and T. Wakabayashi : Turning Using Extremely Small Amount of Cutting Fluid, J. of JSME (C), Vol.62, No.604, pp.272-277 (1996) (in Japanese).
Google Scholar
[6]
W. Kern : Megasonic Particle Removal from Solid State Wafer, RCA Review, Vol.46, No.3, pp.81-105 (1985).
Google Scholar
[7]
K. Suzuki, H.B. Qun, Y. Shishido, T. Uematsu, M. Iwai and S. Shimizu : Proposal of Megasonic Vibration Induced Coolant and Its Application to Machining, Abrasive Technology - Current Development and Applications I -, World Scientific, P.394-399 (1999). Fig.11 Working Surface after Grinding Stainless Steel (a)With normal coolant Welded chips (b)With megasonic coolant Cutting edge Fig.11 Working Surface after Grinding Stainless Steel (a)With normal coolant Welded chips (b)With megasonic coolant Cutting edge (a)With normal coolant Welded chips (a)With normal coolant Welded chips (b)With megasonic coolant Cutting edge (b)With megasonic coolant Cutting edge
DOI: 10.1142/9789812817822_0070
Google Scholar