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Influence of selected cutting conditions on cutting forces

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents achieved results of research focused on the influence of various factors modification on cutting forces at longitudinal turning of steel C 45 using two tools with different shape and geometry at constant values of feed and depth of cut. The individual components of cutting force were compared reciprocally, i. e. axial, radial, tangential and finally resulting cutting force depending on cutting speed.
Słowa kluczowe
Twórcy
autor
  • Slovak University of Technology, Faculty of Material Science and Technology, J. Bottu 25, 917 24, Trnava, Slovak Republic
  • University of Žilina, Faculty of Mechanical Engineering, Univerzitna 1, 010 26, Žilina, Slovak Republic
  • Slovak University of Technology, Faculty of Material Science and Technology, J. Bottu 25, 917 24, Trnava, Slovak Republic
  • Slovak University of Technology, Faculty of Material Science and Technology, J. Bottu 25, 917 24, Trnava, Slovak Republic
autor
  • Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland
Bibliografia
  • 1. Görög, A. Dynamic conditions for turning threads. In Progressive and innovative machining technology and manufacturing techniques 2012: Proceedings of VIII. International Scientific Conference held on the occasion of the 45th anniversary of the Department of Machining and Manufacturing Technology. 5.-7.9.2012, Papradno - Podjavorník, Žilina. Žilina: Žilinská univerzita, 2012, 54–55.
  • 2. Janáč, A., Lipa, Z., Peterka, J. Theory of Machining. Bratislava: STU, 2006.
  • 3. Vasilko, K., Murčinová, Z. Question of Optimal Cutting Speed for Machining by Conventional and Coated Cutting Tools. In: Manufacturing Technology, Vol. 15, 483–490.
  • 4. Dubovská, R., Majerik, J. Experimental Investigation and Analysis of Cutting Forces When Machining X5CrNi18-10 Stainless Steel. In: In: Manufacturing Technology, Vol. 15, 322–329.
  • 5. Vasilko, K., Mádl, J. Theory of Machining. Ústí nad Labem: Univerzita J.E. Purkyně, 2012.
  • 6. Vasilko, K. Analytival Theory of Machining. Prešov: FVT, 2007.
  • 7. Petřkovská, L., Brychta, J., Nováková, J. Aspects of High Speed Machining. Prešov: Manufacturing Engineering, FVT, 2008, 67–68.
  • 8. Silva, R. L. et all. A note on the influence of cutting speed on cutting forces and surface finish during precision turning of aisi 1045 steel. In: Journal of engineering annals. Faculty of engineering Hunedoara. Vol. 6/2, 13–118.
  • 9. Fang, N., Pai, P.S. & Mosquea, S. Effect of tool edge wear on the cutting forces and vibrations in high-speed finish machining of Inconel 718: an experimental study and wavelet transform analysis. In: The International Journal of Advanced Manufacturing Technology, Vol. 52, 65–77.
  • 10. Kamely, M.A., Noordin, M.Y.R. The impact of cutting tool materials on cutting force. World Academy of Science, Engineering and Technology (51) 2011, 903–906.
  • 11. Sadílek, M., Čep, R., Sadílková, Z., Valíček, J., Petřkovská, L. Increasing tool life in turning with variable depth of cut. Materiali in tehnologije, Inštitut za kovinske materiale in tehnologije, 2013, 199–203.
  • 12. Vasilko, K. Analysis of the impact of cutting speed on machining process. Manufacturing Engineering. Prešov: FVT, 2010, 9(1), 5–9.
  • 13. Asthakov, V. P. Basic Definitions and Cutting Tool Geometry, Single Point Cutting Tools. In: Geometry of Single-point Turning Tools and Drills, 55–126.
  • 14. Hruby, J., Schindlerova, V. - Rentka, J.: Degradation processes in the contact layers of forming tools. In. Manufacturing Technology, Volume 15, Issue 5, 1 November 2015, 836–842.
  • 15. Neslušan, M., Turek, S., Brychta, J., Čep, R., Tabaček, M. Experimental Methods in Machining. Edis Žilina 2007, 345.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ddfee04b-531d-4ec9-a90f-81f1d56cb555
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