Investigation of the effect of speed ratio on workpiece surface topography and grinding power in cylindrical plunge grinding using grooved and non-grooved grinding wheels

Author:

Patel A.,Bauer R. J.ORCID,Warkentin A.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference15 articles.

1. Gadelmawla ES, Koura MM, Maksoud TMA, Elewa IM, Soliman HH (2002) Roughness parameters. J Mater Process Technol 123(1):133–145

2. George LP, Job KV, Chandran IM (2013) Study on surface roughness and its prediction in cylindrical grinding process based on taguchi method of optimization. Int J Sci Res Publ 3(5):1–5

3. Panthangi RK, Naduvinamani V (2017) Optimization of surface roughness in cylindrical grinding process. Int J Appl Eng Res 12(18):7350–7354

4. Thiagarajan C, Sivaramakrishnan R, Somasundaram S (2012) Modeling and optimization of cylindrical grinding of Al/SiC composites using genetic algorithms. J Braz Soc Mech Sci Eng 34(1):32–40

5. Kiyak M, Cakir O, Altan E (2003) A study on surface roughness in external cylindrical grinding. Proc. 12th Int Scientific Conference Achievements in Mech and Mat Eng. pp 459–462

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