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Surface integrity evaluation of turning with auto-rotating tool

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The technical practice requirements comes to have increased demands on higher productivity, speed and quality of the machining process of various materials. Hard to machine materials, whose machining led to the development of turning with rotating cutting edge are not an exception. The machining process of auto-rotating tool is more complicated than the conventional process of turning, especially for the process of reshaping cutting layers into chips. There is a significant load in the system, that may affect the life of the cutting edge of the tool as well as the whole system and also in the final extent of the qualitative parameters of the workpiece (product / product). The article specifies the knowledge and findings of measurement in machining material 100Cr6 with an auto-rotating tool. The measurements were conducted to evaluate the integrity of the surface (roughness) of the workpiece to the impacts of cutting conditions, in particular the feed and the cutting edge inclination. It also analyzes the presence (size, character, action) of residual stresses concentrated in the surface layers of the workpiece by changing the cutting conditions.
Słowa kluczowe
Twórcy
  • Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia
autor
  • Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia
autor
  • Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia
  • Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia
autor
  • Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia
autor
  • Faculty of Manufacturing Technologies, Technická Univerzita v Košiciach so sídlom v Prešove, Bayerova 1, 08001 Presov, Slovakia
Bibliografia
  • 1. Vasilko K., Pilc J.: Tools and Technology for highly productive Wood Materials. Manufacturing Engineering, 10(3), 2011, 8-13.
  • 2. Stancekova D., Kurnava T., Sajgalik M., Naprstkova N., Struharnansky J., Ščotka, P.: Identification of machinability of ceramic materials by turning. Manufacturing Technology, 14(1), 2014, 91-97.
  • 3. Sapietová, A., Gajdoš, L., Dekýš, V., Sapieta, M.: Analysis of the influence of input function contact Parameters of the impact force Process in the MSC. ADAMS. Advances in Intelligent Systems and Computing, 393(1), 2016, 243-253.
  • 4. Sadílek M., Kratochvíl J., Petrů J.,Cep R., Zlámal T., Stančeková D.: Cutting tool wear monitoring with the use of impedance layers. Tehnicki Vjesnik, 21(3), 2014, 639–644.
  • 5. Czan A., Martikan A., Holubjak J., Struharnansky J.: Identification of stress and structure properties in surface and subsurface layers of nuclear reactor austenitic steel. Manufacturing Technology, 14(3), 2014, 276-281.
  • 6. Novotný J. Cais J., Náprstková N.: Analysis of aluminium alloys AlSi7Mg0.3 and AlMg3 by means of X-Ray diffraction, Manufacturing Technology, 14(3), 2014, 392-397.
  • 7. Krolczyk G.M., Niesłony P., Legutko S.: Determination of tool life and research wear dur-ing duplex stainless steel turning. Archives of Civil and Me¬chanical Engineering, 15(2), 2015, 347–354.
  • 8. Cubonova N., Kuric I.: Data structures implementation of the protocol STEP-NC at CNC machines programming. Komunikacie, Vol. 16, Iss. 3A, 2014, 176-183.
  • 9. Bas G., Stoev L. Durakbasa N.M.: Assessment of the production quality in machining by integrating a system of high precision measurement. Energy Procedia, Vol. 100, Iss. C, 2015, 1616-1624.
  • 10. Rudawska, A.: Influence of the thickness of joined elements on lap length of aluminium alloy sheet bonded joints. Advances in Science and Technology Research Journal, 9(27), 2015, 35-44.
  • 11. Müller M., Chotěborský R., Valášek P., Hloch. S.: Unusual possibility of wear resistance increase research in the sphere of soil cultivation. Tehnicki Vjesnik-Technical Gazette, 20(4), 2013, 641-646.
  • 12. Litvaj, I., Poniščiaková, O., Stančeková, D., Drbúl, M.: Knowledge processes and their implementation in small transport companies. In: Transport Means - Proceedings of the International Conference, 2013, 153–156.
  • 13. Pilc, J.-Mičietová, A.: Obrábanie kovov autorotujúcimi nástrojmi. Žilina : EDIS, 2003. pp. 106.
  • 14. Kordik, M., Struharnansky, J., Martikan, A., Stancekova, D., Kusmierzak, S., Martincek, J.: Insertcoating Influence on Residual Stress of Turned Outer Bearings. J. Manufacturing Technology, 16(1), 2016, 136-140.
  • 15. Fulemová J., Řehoř, J.: Influence of form Factor of the Cutting Edge on Tool Life during Finishing Milling. In Procedia Engineering. Vídeň: Elsevier Ltd, 2015. 682-688.
  • 16. Sadilek M., Fojtík F., Sadílková Z., Kolařík K., Petrů J.: A Study of Effects of Changing the Position of the Tool Axis to the Machined Surface, Transaction of FAMENA, 39(2), Zagreb 2015, 33-46.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-76626671-41b5-4005-86d9-b54f80b027b5
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