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Zastosowanie obróbki nagniataniem w tworzeniu ekologicznego produktu

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Application of Burnishing Process in Creating Environmental Product
Języki publikacji
PL
Abstrakty
EN
The aim of this article is to demonstrate the applicability of innovative burnishing rolling process in the creation of eco-product. Applying the principle of eco-design one should take into account the construction and manufacturing process. Burnishing rolling process is effective: technologically, economically and environmentally way of treatment of the machine's outer layers. According to the literature promising results can be achieved by using a surface plastic treatment. It allows to receive product with advantageous shaped surface layer adapted to the conditions of exploitation (it is possible to control the surface roughness parameters and residual stress state). Study of the proposed technology may to confirm the possibility of steering of surface layer properties in aspect of receiving optimal utility properties. This approach will make possible the production of parts with minimal loss in material and energy. In order to prove the ability to create eco-product one conducted experimental and numerical researches of burnishing rolling process showing the ability to control the state of the surface layer of the product (surface condition and the state of stress).
Rocznik
Strony
323--335
Opis fizyczny
Bibliogr. 13 poz., tab, rys.
Twórcy
  • Politechnika Koszalińska
autor
  • Politechnika Koszalińska
autor
  • Politechnika Koszalińska
Bibliografia
  • 1. Bohdal Ł.: Finite element simulation of 3D sheet metal guillotining using elastic/visco-plastic damage model. Steel Research International. Special Edition: 14th International Conference on Metal Forming, 1419–1422 (2012).
  • 2. Bohdal Ł, Walczak P.: Eco-modeling of metal sheet cutting with disc shears. Rocznik Ochrona Środowiska (Annual Set The Environment Protection) 15, 863–872 (2013).
  • 3. Kukielka L., Kulakowska A., Patyk R.: Numerical modeling and simulation of the movable contact tool-worpiece and application in technological processes, Journal of Systemics, Cybernetics and Informatics. Vol. 8/3, 36–41 (2010).
  • 4. Kulakowska A., Kukielka L.: Numerical analysis and experimental researches of burnishing rolling process with taking into account deviations in the surface asperities outline after previous treatment. Steel Research International, vol. 2, 42–48 (2008).
  • 5. Kulakowska A.: Problems of surface preparation under burnishing rolling in aspect of product quality. Steel Research International, vol. 81/9, 218–221 (2010).
  • 6. Kulakowska A.: Experimental researches of burnishing rolling process of regular surface asperities prepared in turning process. Steel Research International. Special Edition: 14th International Conference on Metal Forming, 127–131 (2012).
  • 7. Legutko S., Nosal S.: Kształtowanie technologicznej i eksploatacyjnej warstwy wierzchniej części maszyn, Ośrodek Wydawnictw Naukowych, Poznań 2004.
  • 8. Patyk R.: Theoretical and experimental basis of regular asperities about triangular outline embossing technology. Steel Research International, vol. 81/9, 190–193 (2010).
  • 9. Patyk R., Kukielka L.: Optimization of geometrical parameters of regular triangular asperities of surface put to smooth burnishing. Steel Research International, vol. 2, 642–647 (2008).
  • 10. Patyk R.: New method of technological surface layer shaping of machine parts during duplex burnishing rolling process. Steel Research International, Special Edition: 14th International Conference on Metal Forming, 115–117 (2012).
  • 11. Przybylski W.: Technologia obróbki nagniataniem, WNT, Warsaw 1987.
  • 12. Shrivastava P.: Environmental technologies and competitive advantage, Strategic Management Journal, vol. 16, 183–200 (1995).
  • 13. Wrzesiewski & Miler s.c.: Rynek polskich technologii środowiskowych, raport 2010, MŚ, "GreenEvo - Akcelerator Zielonych Technologii".
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ee080a40-7d53-49ef-8bbf-c2801d304d8d
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