Deburring of Soft, Complex Aluminium Alloy Parts


Authors : Komal V Gaikwad; Tejaswini S Mane; Himali S Naik; Mansi N Sherkar; Dr. J. S. Gawande

Volume/Issue : Volume 9 - 2024, Issue 5 - May

Google Scholar : https://tinyurl.com/3kmtpmyt

Scribd : https://tinyurl.com/95keznn7

DOI : https://doi.org/10.38124/ijisrt/IJISRT24MAY2211

Abstract : This Processs investigates the effectiveness of utilizing a vertical drill machine to integrate a brush for deburring soft aluminum parts. The aim is to enhance the efficiency and precision of the deburring process in manufacturing operations. The project involves the design and assembly of a specialized attachment to the drill machine, enabling seamless integration of the brush. Through experimental analysis, the performance of the integrated system is evaluated in terms of deburring quality, time efficiency, and cost-effectiveness compared to traditional deburring methods. The results demonstrate significant improvements in deburring effectiveness and productivity, highlighting the potential of this approach for enhancing manufacturing processes involving soft aluminum parts. This technique is so affordable price.

Keywords : Deburring, Soft Aluminum Alloy Part,Brush.

References :

  1. Karnik S, Gaitonde V, Davim J., “A comparative study of the ANN and RSM modeling approaches for predicting burr size in drilling. The International Journal of Advanced Manufacturing Technology,” The International Journal of Advanced Manufacturing Technology, 38(9):868-883, September 2008, DOI:10.1007/s00170-007-1140-7, September 2008.
  2. Jakub Matuszak, Kazimierz Zaleski, “Analysis of deburring effectiveness and surface layer properties around edges of workpieces made of 7075 aluminium alloy,” Aircraft Engineering and Aerospace Technology, 9 April 2018,ISSN: 0002-2667.
  3. Seyed Ali Niknam, Yasser Zedan and Victor Songmene, “Machining Burrs Formation & Deburring of Aluminium Alloys,” 11 June 2014, DOI: 10.5772/58361.
  4. Lee, K., and Dornfeld, D., “An Experimental Study on Burr Formation in Micro-milling Aluminum and Copper,” Trans.NAMRI/SME, Vol. 30, 2002, pp. 1–8.Y.
  5. Narayanaswami, R., and Dornfeld, D.A., “Design and Process Planning Strategies for Burr Minimization and Deburring,” Trans. North American Manufacturing Research Institute, SME, Vol. 22, 1994, pp. 313–322.M. Young, The Technical Writer’s Handbook. Mill Valley, CA: University Science, 1989.

This Processs investigates the effectiveness of utilizing a vertical drill machine to integrate a brush for deburring soft aluminum parts. The aim is to enhance the efficiency and precision of the deburring process in manufacturing operations. The project involves the design and assembly of a specialized attachment to the drill machine, enabling seamless integration of the brush. Through experimental analysis, the performance of the integrated system is evaluated in terms of deburring quality, time efficiency, and cost-effectiveness compared to traditional deburring methods. The results demonstrate significant improvements in deburring effectiveness and productivity, highlighting the potential of this approach for enhancing manufacturing processes involving soft aluminum parts. This technique is so affordable price.

Keywords : Deburring, Soft Aluminum Alloy Part,Brush.

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