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Highly Efficient Technology for Manufacturing of Spunlace Non-Woven Fabric in the Company Novita S.A. Poland – Description and Characteristic of the R&D Actions

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents the process of designing Research and Development actions for innovative technology of highly efficient manufacturing of Spunlace non-woven fabric with the use of the designed demonstrative technological line. Both the designing of the technological line and the research are response to the market needs of the personal care products manufacturers in Poland and in the world. Clients’ expectations concerning this matter deal with increasing the production volume as well as providing better quality of the products. Due to limited (and fully exploited) production capacities and already-known technical problems in the enterprise where the research has been carried out, the authors designed a concept of innovative controlling of the technological line gradually increasing its efficiency. In order to do so, the authors proposed research based on designing the technological line mathematical model, creating its prototype and testing its operational capacities, saving the data in the database and then the use of this empirical data to the technological line parametrisation depending on the properties and destination of the manufactured products.
Rocznik
Strony
269--277
Opis fizyczny
Bibliogr. 12 poz., fig.
Twórcy
autor
  • University of Zielona Gora, Poland
autor
  • University of Zielona Gora, Poland
autor
  • University of Zielona Gora, Poland
  • University of Zielona Gora, Poland
autor
  • Novita S.A. Zielona Gora, Poland
Bibliografia
  • 1. Cheatography Com. (2008) https://www.cheatography.com/davidpol/cheat-sheets/dod-technologyreadiness-levels/.
  • 2. Cooper, R.G., Edgett, S.J., Kleinschmidt, E.J. (1998). Best Practices for Managing R&D Portfolios, Research-Technology Management, (41) 4, pp. 20-33.
  • 3. Javed, K., Gouriveau, R. and Zerhouni, N. (2017). State of the art and taxonomy of prognostics approaches, trends of prognostics applications and open issues towards maturity at different technology readiness levels. Mechanical Systems and Signal Processing, 94, pp. 214-236.
  • 4. Jolly, V.J, (1997). Commercializing new technologies: getting from mind to market. Harvard Business School Press, Boston.
  • 5. Lavoie, J. R. and Daim, T. U. (2017). Technology Readiness Levels Improving R&D Management: A Grounded Theory Analysis. In: Management of Engineering and Technology. Portland International Conference on. IEEE, pp. 1-9.
  • 6. Nasa. (2010). https://www.nasa.gov/pdf/458490main_TRL_Definitions.pdf.
  • 7. Nasa. (2012). https://www.nasa.gov/directorates/heo/scan/engineering/technology/txt_accordion1.html.
  • 8. Peters, S. (2015). A readiness level model for new manufacturing technologies. Production Engineering, 9(5-6), pp. 647-654.
  • 9. Sauser B., Ramirez-Marquez J., Verma D., Gove R. (2006). From TRL to SRL. In: The Concept of Systems Readiness Levels Conference on Systems Engineering Research. Los Angeles.
  • 10. Schumpeter, J. A., Business Cycles. (1964). A Theoretical, Historical and Statistical Analysis of the Capitalist Process. New York: McGraw Hill.
  • 11. Shishkio, R., D.H. Ebbeler, and G. Fox. (2003). Nasa Technology Assessment Using Real Options Valuation. Systems Engineering 7(1), pp.1-12.
  • 12. Stecuła, K., Brodny, J. (2016). Application of the OEE model to analyze the availability of the mining armored face conveyor. SGEM 2016 Conference Proceedings, Book1 Vol. 2, pp. 57-64.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b49fd502-c3bc-4b3a-9ab4-d9bd93dbe926
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