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Lekkie rozwiązania w przemyśle samochodowym

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Identyfikatory
Warianty tytułu
EN
Lightweight solutions in automotive industry
Języki publikacji
PL
Abstrakty
PL
W artykule omówiony został wpływ stosowania lekkich rozwiązań w przemyśle samochodowym na rozwój stosowanych cieczy roboczych przy obróbce plastycznej elementów pojazdów.
EN
Paper discussed the effect of using the lightweight solutions in automotive industry upon the development of metalworking fluids applied during formation the automotive components.
Rocznik
Strony
1311--1314, CD
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
  • Politechnika Łódzka
  • Politechnika Łódzka
Bibliografia
  • 1. McGuire N., Automotive industry lightens up, Tribology & Lubrication Technology, Nov. 2017, vol. 73, No 11, pp. 30-42.
  • 2. Schneider R., Heine B. and Grant R. J. (2014), Mechanical Behaviour of Commercial Aluminium Wrought Alloys at Low Temperatures, Light Metal Alloys Applications, Dr. Waldemar A. Monteiro (Ed.), InTech, DOI: 10.5772/58362. Available at www.intechopen.com/books/lightmetal-alloysapplications/mechanical-behaviour-of-commercial-aluminium-wrought-alloys-at-low-temperatures.
  • 3. The Aluminum Association. (November 2016), “Industry statistics, facts at a glance - 2015. Available at http://aluminum.org/sites/default/files/FactSheet2015.pdf.
  • 4. Aluminum Recycling. Available at www.aluminum.org/sustainability/aluminum-recycling.
  • 5. Byers, J. P., ed., (2006), Metalworking Fluids, Second Edition, CRC Press: Boca Raton, FL. ISBN-13:978-1-5744-4689-0.
  • 6. Evans, R. and eds. Astakhov, V. P. and Joksch, S. (2012), “Metalworking fluids (MWFs) for cutting and grinding: Fundamentals and recent advances,” Woodhead Publishing Series in Metals and Surface Engineering Series #48, Elsevier Science, pp. 29-42. ISBN-13: 978-0-8570-9061-4.
  • 7. Martinsen, K. and Gulbrandsen-Dahl, S. (2015), “Use of postconsumer scrap in aluminum wrought alloy structural components for the transportation sector, 22nd CIRP Conference on Life Cycle Engineering,” Procedia CIRP, 29, pp. 686-691. Available at http://ac.els-cdn.com/S2212827115001158/1-s2.0S2212827115001158-main.pdf?_tid=0dec3574-82a0-11e7a28000000aacb35e&acdnat=1502901140_cdc78ca2031141a8a22e0241fce2740c.
  • 8. Plunkert, P. A., (2006), “Aluminum recycling in the United States in 2000,” U.S. Geological Survey Circular 1196-W. Available at https://pubs.er.usgs.gov/publication/cir1196W.
  • 9. U.S. Dept. of Energy, (July 1997), “Energy and Environmental Profile of the U.S. Aluminum Industry.” Available at www1.eere.energy.gov/manufacturing/resources/aluminum/pdfs/aluminum.pdf.
  • 10. Schulz, J., Brinksmeier, E. and Meyer, D. (2013), “On the interactions of additives in metalworking fluids with metal surfaces,” Lubricants, 1, pp. 75-94. DOI: 10.3390/lubricants1040075. Available at www.mdpi.com/journal/lubricants.
  • 11. Byers, J. (2010), “Corrosion issues and test methods,” Presentation at the STLE Annual Meeting and Exhibition.
  • 12. Skerlos, S. J., Hayes, K. F., Clarens, A. F. and Zhao, F. (2008), “Current advances in sustainable metalworking fluids research,” International Journal of Sustainable Manufacturing, 1(1-2), pp. 180-202. Available at https://experts.umich.edu/en/publications/currentadvances-in-sustainable-metalworking-fluids-research and www.personal.umich.edu/~skerlos/mfg.pdf.
  • 13. Reboux G., Grenouillet F., Roussel S., Tillie-Leblond I., Chouraki B., Lorthois C., Schosger M., Thaon I., Dalphin J. C., Millon L., Microbiological Survey of Metalworking Fluids in the French Automotive Industry, American Thoracic Society International Conference 2008, abstract F80.
  • 14. Nynas AB. (Oct. 31, 2016), “Growth opportunities in the MWF market, News from Nynas (press release). Available at www.nynas.com/en/media/newslist/growth-opportunities-in-themwf-market/.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5b75b8e0-2f4f-4cae-a33f-7714e67dfb14
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