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Tytuł artykułu

The study of cutting forces and their amplitudes during high-speed dry milling magnesium alloys

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Języki publikacji
EN
Abstrakty
EN
This paper presents the state of knowledge on cutting forces values during milling of different magnesium alloy types. Additionally, the results of own research on cutting forces and their amplitudes after milling magnesium alloys used for manufacturing elements applied in the aerospace industry are included. The subject of the analysis was the influence of technological parameters and the tool type on cutting forces and their amplitudes. The analysis is important due to the correlation between cutting forces and temperature in the cutting area, and, consequently, the safety of machining and strain of the workpiece.
Twórcy
autor
  • Department of Production Engineering, Mechanical Engineering Faculty, Lublin University of Technology, 36 Nadbystrzycka Str., 20-618 Lublin, Poland
  • Department of Production Engineering, Mechanical Engineering Faculty, Lublin University of Technology, 36 Nadbystrzycka Str., 20-618 Lublin, Poland
Bibliografia
  • 1. Adamski W. Manufacturing development strategies in aviation industry. Advances in Manufacturing Science And Technology, 2010, 34(3): 73-84
  • 2. Akyuz B. Machinability of magnesium and its alloys. TOJSAT: The Online Journal of Science and Technology, July 2011, 1(3): 31-38.
  • 3. Fang F.Z., Lee L.C., Liu X.D. Mean Flank Temperature Measurement in High Speed Dry Cutting. Journal of Materials Processing Technology, 2005, 167: 119–123.
  • 4. Grzesik W. Fundamentals of the machining of constructional materials. WNT, Warsaw 2010.
  • 5. Kuczmaszewski J., Zagórski I. The study of cutting forces and amplitudes during the milling magnesium alloys. Postępy Nauki i Techniki, 2012, 15: 228-237.
  • 6. Leigh E., Tlusty J., Schueller J. Applying high-speed machining techniques on rotor grip configurations, Presented at the American Helicopter Society 55th Annual Forum, Montréal, Quebec, Canada, May 25–27, 1999, p. 1-16.
  • 7. Oczoś K.E. Efficient machining of magnesium alloys. Mechanik, 2000, 7: 467-474.
  • 8. Oczoś K.E. Extension of the magnesium alloys application range. Mechanik, 2009, 5-6: 386-400.
  • 9. Oczoś K.E., Kawalec A. Light metals forming. PWN, Warsaw 2012.
  • 10. Tönshoff H.K., Denkena B., Winkler J., Podolsky Ch. Technology of Mg and Mg alloys: Machining. Edited by Friedrich H.E., Mordike B.L., Springer 2006, p. 398-418.
  • 11. Tönshoff H.K., Winkler J. The influence of tool coatings in machining of magnesium. Surface and Coatings Technology, 1997, 94-95: 610-616.
  • 12. Zagórski I., Kuczmaszewski J. Selected problems of effectiveness of processing of magnesium alloys with a Kordell design tool. Management and Production Engineering Review, 2011, 4: 90-96.
  • 13. Zalewski A. Optimal HSM machining strategy for improving production efficiency. Design and Engineering Constructions, Dec. 2007, 3: 23-26.
  • 14. http://www.sandvik.coromant.com/, Sandvik Coromant Catalogue, Metalcutting Technical Guide: Milling, 15.03.2011.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b7a264fa-5f5b-45a2-96fe-76987c4823fc
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