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Design for manufacturability in virtual environment using knowledge engineering

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Języki publikacji
EN
Abstrakty
EN
Design for manufacturing (DFM) strategies help companies to develop new products that are feasible to manufacture. In the early stages of design all engineering activities are initiated in computer aided systems. When the design is finished, the process of manufacturing and production planning begins. Issues often occur at this point because two teams, designers and manufacturers, have been working separately. The resulting question is: ‘how can Knowledge Engineering (KE) be used effectively to enhance manufacturability during early design?’ Even if the most complex geometrical product can be realized using today’s technologies such as rapid prototyping it is only true in unit production. In lot and mass production where CNC machines are used, complex geometry causes a number of difficulties. So it is important to investigate the project carefully in the early design stage from the point of view of whether it will be possible to manufacture.
Twórcy
  • University of Zielona Gora, Institute of Computer Science and Management, Zielona Góra, Poland
autor
  • Slovak University of Technology in Bratislava, Faculty of Materials Science And Technology in Trnava
Bibliografia
  • [1] Bralla J.G., Design of Excellence, McGraw Hill, New York 1996.
  • [2] Anderson D.M., Design for manufacturability & Concurrent Engineering CIM Pres, USA, 2010.
  • [3] Jakubowski J., Woźniak W., Design for manufacture in computer aided design system [in:] Global Crises - Opportunities and Threats - CO-MATECH 2012: 20th international scientific conference. Trnava, Słowacja, 2012, Trnava,Wyd. Alumnipress, pp. 94-101, 2012.
  • [4] Sandberg M., Manufacturability evaluation in early design. On the dependancy of business commitment, Proceedings of the 5th International Conference on Manufacturing Research, Leicester, UK, 2007.
  • [5] Tien-Chien Chang, R.A. Wysk, Computer Aided manufacturing, Prentice Hall, 1998.
  • [6] Sąsiadek M., Komputerowo wspomagane planowanie sekwencji montażu z uwzględnieniem zasad DFA, Przegląd Mechaniczny, 4, 23-29, 2012.
  • [7] Sąsiadek M., A method of mechanical assembly sequence planning with accordance to the DFA principles [in:] Modelování a optimalizace podnikových procesů – MOPP 2011. 13. ročnik mezinárodního semináře, Plzeň, Czechy, 2011, Plzeň, 2011, s. [8] [CD-ROM], ISBN: 978-80-261-0060-7.
  • [8] Duda J., Pobożniak J., Concurrent development of product, processes and manufacturing systems in PLM environments, Springer-Verlag, London, 2010.
  • [9] Matuszek J., Kurczyk D., Tendencje rozwoju w projektowaniu i zarządzaniu procesami produkcji, Zeszyty Naukowe ATH, Bielsko Biała, 2009.
  • [10] Ashby M.F., Jones D.R.H., Materiały inżynierskie. Właściwości i zastosowania, WNT, Warszawa, 1995.
  • [11] James G., Bralla Design for manufacturability handbook, MCGrow-Hill, 2004.
  • [12] Nikiel G., Wymiana danych geometrycznych w komputerowo wspomaganym projektowaniu i wytwarzaniu, Mechanik nr 2/2010.
  • [13] Jung Hyun Han, Mike Pran,William C. Regli, Manufacturing Feature Recognition from solid Models: A status report, IEE Transactions on robotics and automation, 16, 6, 82-92, 2000.
  • [14] Czarnecki K., Pietroszek K., Veryfying Feature Based Model Templates Against well-formedness OCL Constraints, GPCE’06 Portland, Oregon USA, pp. 211–220, 2006.
  • [15] Boothroyd G., Dewhurst P., KnightW., Product design for manufacture and assembly, Marcel Dekker Inc., USA, 2008.
  • [16] Priest J.W., Sanches J.M., Product development and design for manufacturing. Quality and Reliability, Ed. E. G. Schiling, Rochester Institute of Technology, New York, 2003.
  • [17] www.dfmpro.com (2013.05.28)
  • [18] Wu Bin, Handbook of Manufacturing and supply systems design, Taylor and Francis Group, 2005.
  • [19] Bernie P. Huang, Jacobs Chen, Joseph C. Chen., Testing a new curriculum of design for manufacturability in technical education, Journal of Industrial Technology, 20, 4, 2004.
  • [20] Bordegoni M., Rizzi C., Innovation in Product Design, Springer, 2011.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1fefb2d3-8798-4fce-ab90-22eafb7e080c
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