[1]
M.R. Hanard (1985) Production Grinding of Cam Lobes with CBN. Proc. of the Society of Manufacturing Engineers, pp.4-11.
Google Scholar
[2]
G.J. Kocisis & C.E. Stine (1986) New Developments in the Processing Approach to Camshaft Lobe Grinding. Proc. of the A.E.S. Conference, pp.169-170.
Google Scholar
[3]
I. Suzuki (1984) Development of Camshaft and Crankshaft Grinding Technology Using Vitrified CBN Wheels. Proc. of the Society of Manufacturing Engineers, Paper MR84-526.
DOI: 10.4271/851554
Google Scholar
[4]
M. Tsujichi (1988) CNC Camshaft Grinder with small Diameter CBN Wheels. Proc. of the 3 rd Int. Grinding Conference. SME paper MR88-609.
Google Scholar
[5]
M.P. Hitchiner (1991) Systems Approach to Production Grinding with Vitrified CBN. Proc. of the Superabrasives Conference. SME paper MR91-148.
Google Scholar
[6]
F. Klocke & W. König (1995) Appropriate Conditioning Strategies to Increase the Performance Capabilities of Vitrified Bond CBN Grinding Wheels. Annals of the CIRP vol. 44/1 pp.305-310.
DOI: 10.1016/s0007-8506(07)62331-2
Google Scholar
[7]
W.B. Rowe, X Chen & D.R. Allanson (1997) The Coolant Coupling Method Applied to Touch Dressing in High Frequency Internal Grinding. Proc. of the 32nd Int. MATADOR Conference, Manchester, UK, pp.337-340.
DOI: 10.1007/978-1-349-14620-8_53
Google Scholar
[8]
H.K. Tönshoff, B. Karpuschewski, P. Andrae & A. Türich (1998) Grinding Performance of Superhard Abrasive Wheels. Annals of the CIRP vol. 47/2, pp.723-732.
Google Scholar
[9]
X. Chen, W.B Rowe, & R. Cai (2002) Precision Grinding Using CBN Wheels. International Journal of Machine Tools and Manufacture, vol. 42, pp.585-593.
DOI: 10.1016/s0890-6955(01)00152-3
Google Scholar
[10]
X. Chen, W.B Rowe, & D.F. McCormack (1999) Predicting the Onset of Tensile Residual Stress in Grinding. 3rd Int. Machining & Grinding Conference. SME paper MR99-261.
Google Scholar
[11]
D.M. Grove & T.P. Davis (1992) Engineering, Quality and Experimental Design. Longman Scientific and Technical.
Google Scholar