The effects of grit properties and dressing on grinding mechanics and wheel performance: Analytical assessment framework
暂无分享,去创建一个
[1] P. Krajnik,et al. Application of the dimensionless Aggressiveness number in abrasive processes , 2021, Procedia CIRP.
[2] Anthony Beaucamp,et al. Compliant grinding and polishing: A review , 2020 .
[3] D. Axinte,et al. Influence of grit geometry and fibre orientation on the abrasive material removal mechanisms of SiC/SiC Ceramic Matrix Composites (CMCs) , 2020 .
[4] P. Krajnik,et al. On geometry and kinematics of abrasive processes: The theory of aggressiveness , 2020, International Journal of Machine Tools and Manufacture.
[5] P. Krajnik,et al. Effect of the grit shape on the performance of vitrified-bonded CBN grinding wheel , 2020 .
[6] H. Ghadbeigi,et al. The Influence of Abrasive Grit Morphology on Wheel Topography and Grinding Performance , 2018 .
[7] F. Klocke,et al. Analysis of the grain shape influence on the chip formation in grinding , 2015 .
[8] Jeffrey Badger,et al. Grinding of sub-micron-grade carbide: Contact and wear mechanisms, loading, conditioning, scrubbing and resin-bond degradation , 2015 .
[9] Taghi Tawakoli,et al. Effect of Dressing on Internal Cylindrical Grinding , 2014 .
[10] David Lee Butler,et al. Correlation of grinding wheel topography and grinding performance: A study from a viewpoint of three-dimensional surface characterisation , 2008 .
[11] A. M. Hoogstrate,et al. Form crush dressing of diamond grinding wheels , 2008 .
[12] Eduardo Carlos Bianchi,et al. Analysis of the different forms of application and types of cutting fluid used in plunge cylindrical grinding using conventional and superabrasive CBN grinding wheels , 2006 .
[13] K. Breder,et al. The influence of grinding conditions on the performance of different CBN types , 2005 .
[14] W. B. Rowe,et al. Assessment of vitrified CBN wheels for precision grinding , 2004 .
[15] S. B. McSpadden,et al. Evaluation of Factors Controlling CBN Abrasive Selection for Vitrified Bonded Wheels , 2004 .
[16] M. Jackson,et al. Controlled wear of vitrified abrasive materials for precision grinding applications , 2003 .
[17] A. Shih. An experimental investigation of rotary diamond truing and dressing of vitreous bond wheels for ceramic grinding , 2000 .
[18] A. Torrance,et al. A comparison of two models to predict grinding forces from wheel surface topography , 2000 .
[19] E. Brinksmeier,et al. Characterization of Dressing Processes by Determination of the Collision Number of the Abrasive Grits , 1995 .
[20] Stephen Malkin,et al. Grinding Technology: Theory and Applications of Machining with Abrasives , 1989 .
[21] S. Malkin,et al. Effects of Rotary Dressing on Grinding Wheel Performance , 1978 .
[22] S. Malkin,et al. Mechanics of Rotary Dressing of Grinding Wheels , 1978 .
[23] Stephen Malkin,et al. Minimum energy in abrasive processes , 1975 .
[24] N. Cook,et al. The Wear of Grinding Wheels: Part 2—Fracture Wear , 1971 .
[25] N. Cook,et al. The Wear of Grinding Wheels: Part 1—Attritious Wear , 1971 .