International E-publication: Publish Projects, Dissertation, Theses, Books, Souvenir, Conference Proceeding with ISBN.  International E-Bulletin: Information/News regarding: Academics and Research

Development of “α-Al2O3 Embraced Grinding Wheel” for Achieving Nano Level Surface Finish

Author Affiliations

  • 1Department of Mechanical Engineering, Tribology and Maintenance Engineering Lab, Shri Govindram seksaria Institute of Technology and Science (SGSITS), Indore, India
  • 2Department of Mechanical Engineering, Tribology and Maintenance Engineering Lab, Shri Govindram seksaria Institute of Technology and Science (SGSITS), Indore, India
  • 3Department of Mechanical Engineering, Tribology and Maintenance Engineering Lab, Shri Govindram seksaria Institute of Technology and Science (SGSITS), Indore, India

Res. J. Engineering Sci., Volume 5, Issue (7), Pages 1-5, July,26 (2016)

Abstract

High surface finish is the requirement for most of the engineering products. High surface finish leads to closer tolerances and longer product life. However, most of the existing processes have their own limitations for producing product specific surface roughness in a cost effective manner. This limitation is primarily induced due to the particle size of constituent abrasive, which is directly reflected on the grinded surface. To overcome this limitation, use of nano size particle of &

References

  1. Rahman M., Senthil Kumarand A. and Fatima K. (2003)., Nano finish grinding of brittle materials using electrolytic in-process dressing (ELID) technique., Sadhana, 28(5), 957-974.
  2. Hmt H.M.T. (2001)., Production technology., Tata McGraw-Hill Education, ISBN-13: 978-0-07-096443-3, 247.
  3. Shinji Fujiwara, Yasuaki Tamura, Hajime Maki, Norifumi Azuma and Yoshiaki Takeuchi (2007), Development of New High-Purity Alumina., (R&D Report) Sumitomo Chemical Co., Ltd, Volume 1.
  4. George E. Dieter (1988)., Mechanical metallurgy., McGraw-Hill Book Company, ISBN 07-016890-3.
  5. Siva Sankar R., Asokan P., Saravanan R., Siva Kumanan and Prabharan G. (2007)., Selection of machining parameters for constrained machining problem using evolutionary computation., The International Journal of Advanced Manufacturing Technology, 32(9), 892-901.
  6. Oliveira J.F.G., Silva E.J., Guo C. and Hashimoto F. (2009)., Industrial challenges in grinding., CIRP Annals-Manufacturing Technology, 58(2), 663-680.
  7. Webster J. and Tricard M. (2004)., Innovations in abrasive products for precision grinding., CIRP Annals-Manufacturing Technology, 53(2), 597-617.