Analytical Review on Acquiring Knowledge of Machining Capacities for Abrasive Flow

Authors

  • Kanapala Rajendra Prasad Sri Satya Sai University of Technology & Medical Sciences, Author

DOI:

https://doi.org/10.61841/8y6j3e79

Keywords:

Machining, Abrasives, Technique, Surface Finish.

Abstract

The abrasive flow machining technique utilizes a self-deforming device, an abrasive loaded media that is passed to and from in the entry geometry of the empty work piece with the help of two using pressurized water operated cylinders put inverse to one another. In the present work, the machining capacities of the abrasive flow machining and attractive abrasive flow machining have been analysed for Aluminium tubes using precisely alloyed attractive abrasives. It has been discovered that the percentage improvement in surface finish (PISF) is better in attractive abrasive flow machining when contrasted with abrasive flow machining.

 

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References

[1] Kenda J., Kopač J. Abrasive flow machining as a sustainable polishing process. In: Proceeding of the 1st International Conference of Sustainable Life in Manufacturing SLIM 2010, Isparta (Turkey), 24-25 June 2010, p. 110-131.

[2] J. Kenda, F. Pusavec, G. Kermouche, J. Kopac, „Surface Integrity in Abrasive Flow Machining of Hardened Tool Steel AISI D2‟, 1877-7058 © 2011 Published by Elsevier Ltd. doi:10.1016/j.proeng. 2011.11.097, J. Kenda et al. / Procedia Engineering 19 (2011) 172 – 177

[3] Manjot S Cheema, Gudipadu Venkatesh, Akshay Dvivedi and Apurbba K Sharma (2012), „Developments in abrasive flow machining: a review on experimental investigations using abrasive flow machining variants and media‟, Proc IMechE Part B: J Engineering Manufacture 226(12)

[4] Abbas F. Ibrahim, SaadK Shather and Wissam K. Hamdan, Studying Abrasive Flow Machining Conditions by Using Taguchi Method, Eng. & Tech. Journal, Vol.32,Part (A), No.4 (2014), pp. 1071- 1082.

[5] Jose Cherian, Dr Jeoju M Issac - "Effect of process variable in abrasive flow machining" at International Journal of Emerging Technology and Advanced Engineering, (ISSN 2250-2459, ISO 9001:2008 Certified Journal, Volume 3, Issue 2, February 2013).

[6] P.D. Kamble, S.P. Untawale and S.B. Sahare - "Use of Magneto Abrasive Flow Machining toIncrease Material Removal Rate and Surface Finish" at VSRD international journal of mechanical, automobile and production engineering VSRD-MAP, Vol. 1 (7), 2012, 249-262

[7] Ramandeep Singh and R.S. Walia - "Hybrid Magnetic Force Assistant Abrasive Flow Machining Process Study for Optimal Material Removal" at International Journal of Applied Engineering Research, ISSN 0973-4562 Vol.7 No.11 (2012).

[8] Brar B.S., Walia R.S., Singh V.P., Singh Mandeep, “Development of a robust Abrasive Flow Machining Process setup”, International Journal of Surface Engineering and Materials Technology (IJSEMT)”, July-

Dec 2011, Vol. 1, pp 17-23

[9] Mali HS and Manna A. Optimum selection of abrasive flow machining conditions during fine finishing of Al/15 wt% SiC-MMC using Taguchi method. Int J Advd Mfg Technol 2010; 50: 1013–1024.

[10] Kamble P.D., Untawale S.P. and Sahare S.B., “Use of Magneto Abrasive Flow Machining toIncrease Material Removal Rate and Surface Finish” VSRD International Journal of Mechanical, Automobile and Production Engineering, Vol. 2, No. 7, pp249-262, 2012.

[11] Singh R. and Walia R.S., "Hybrid Magnetic Force Assistant Abrasive Flow Machining Process Study for Optimal Material Removal," International Journal of Applied Engineering Research, ISSN 0973-4562, Vol.7, No.11, 2012.

[12] M. Ravi Sankar, V. K. Jain, J. Ramkumar, Abrasive flow machining (AFM): An Overview (2011)

[13] Mandeep Singh, "Design and Development of Abrasive Flow Machining Setup, MTech diss., PEC Univ. of Tech., Chandigarh (2010)

[14] G. Venkatesh, A.K. Sharma and P. Kumar, “On ultrasonic assisted abrasive flow finishing of bevel gears”,

International Journal of Machine Tools & Manufacture, 89, 2015, 29–38.

[15] D. Bähre, H. Brünnet and M. Swat, “Investigation of one-way abrasive flow machining and in-process measurement of axial forces”, Procedia CIRP, 1, 2012, 436 – 441.

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Published

30.06.2020

How to Cite

Prasad , K. R. (2020). Analytical Review on Acquiring Knowledge of Machining Capacities for Abrasive Flow. International Journal of Psychosocial Rehabilitation, 24(4), 5769-5774. https://doi.org/10.61841/8y6j3e79