Effect of pulsed DC CFUBM sputtered TiN coating on performance of nickel electroplated monolayer cBN wheel in grinding steel
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[1] W. König,et al. A new dimension for high-speed grinding , 1991 .
[2] P. Kelly,et al. Magnetron sputtering: a review of recent developments and applications , 2000 .
[3] W. Sproul,et al. Dual-unbalanced magnetron deposition of TiN films , 1992 .
[4] S. Yossifon,et al. The Grinding of Workpieces Exhibiting High Adhesion. Part 1: Mechanisms , 1981 .
[5] Tapan P. Bagchi,et al. Taguchi methods explained : practical steps to robust design , 1993 .
[6] W. Sproul,et al. Correlations of plasma properties and magnetic field characteristics to TiN film properties formed using a dual unbalanced magnetron system , 1991 .
[7] S. Malkin,et al. Current Trends in CBN Grinding Technology , 1985 .
[8] M. Bielawski,et al. Residual stress development in UMS TiN coatings , 2005 .
[9] J. Hosson,et al. Stress analysis and microstructure of PVD monolayer TiN and multilayer TiN/(Ti,Al)N coatings , 2003 .
[10] Amitava Ghosh,et al. Experimental investigation on performance of touch-dressed single-layer brazed cBN wheels , 2007 .
[11] N. Cook,et al. The Wear of Grinding Wheels: Part 2—Fracture Wear , 1971 .
[12] Stephen Malkin,et al. An Investigation of Grinding with Electroplated CBN Wheels , 2003 .
[13] S. Yossifon,et al. The Grinding of Workpiece Materials Exhibiting High Adhesion. Part 2: Forces , 1981 .
[14] Jyh-Wei Lee,et al. The effects of pulse frequency and substrate bias to the mechanical properties of CrN coatings deposited by pulsed DC magnetron sputtering , 2006 .
[15] P. Kelly,et al. A comparison of the properties of titanium-based films produced by pulsed and continuous DC magnetron sputtering , 2003 .
[16] Stephen Malkin,et al. Wear of Electroplated CBN Grinding Wheels , 2006 .
[17] James W. Bradley,et al. Recent developments in pulsed magnetron sputtering , 2004 .
[18] A. B. Chattopadhyay,et al. The effect of cryogenic cooling on grinding forces , 1996 .
[19] N. Cook,et al. The Wear of Grinding Wheels: Part 1—Attritious Wear , 1971 .
[20] Amitava Ghosh,et al. Performance enhancement of single-layer miniature cBN wheels using CFUBMS-deposited TiN coating , 2007 .
[21] Stephen Malkin,et al. Thermal Aspects of Grinding With Electroplated CBN Wheels , 2004 .
[22] Jiu-hua Xu,et al. Joining of CBN abrasive grains to medium carbon steel with AgCu/Ti powder mixture as active brazing alloy , 2006 .
[23] Debajyoti Bhaduri,et al. On tribological behaviour and application of TiN and MoS2-Ti composite coating for enhancing performance of monolayer cBN grinding wheel , 2010 .
[24] Z. Liu,et al. Pulsed DC titanium nitride coatings for improved tribological performance and tool life , 2007 .
[25] Honghua Su,et al. Solid-state interfacial reactions and compound morphology of cBN grain and surface Ti coating , 2006 .
[26] J. Sellers. Asymmetric bipolar pulsed DC: the enabling technology for reactive PVD , 1998 .
[27] D. Teer,et al. The industrial application of pulsed DC bias power supplies in closed field unbalanced magnetron sputter ion plating , 2004 .
[28] A. B. Chattopadhyay,et al. Effects of cryo-cooling in grinding steels , 1993 .