7,296
Views
9
CrossRef citations to date
0
Altmetric
Articles

Redesign of an in-market food processor for manufacturing cost reduction using DFMA methodology

, , &
Pages 209-227 | Received 06 Sep 2016, Accepted 11 Nov 2016, Published online: 28 Nov 2016

References

  • Anil, M., Kurain, J., & Arsha, J. D. (2013). Design for manufacturing and assembly of a connecting rod. International Journal of Advanced Research in Mechanical and Production Engineering and Development, 1, 12–18.
  • Annamalai, K., Naiju, C., Karthik, S., & Prashanth, M. M. (2013). Early cost estimate of product during design stage using design for manufacturing and assembly (DFMA) principles. Paper presented at the advanced materials research, 2012 3rd International conference on manufacturing science and technology, ICMST 2012 (Vol. 622, pp. 540–544), New Delhi, India.
  • Boothroyd, G. (1994). Product design for manufacture and assembly. Computer-Aided Design, 26, 505–520.10.1016/0010-4485(94)90082-5
  • Boothroyd, G., Dewhurst, P., & Knight, W. A. (2010). Product design for manufacture and assembly. Boca Raton, FL: CRC Press.
  • Canciglieri Jr., O., Kovalchuk, J. P. B., Rudek, M., & de Souza, T. M. (2010). Development of white goods parts in a concurrent engineering environment based on DFM/DFA concepts. In J. Pokojski, S. Fukuda, & J. Salwiński (Eds.), New world situation: New directions in concurrent engineering (pp. 491–501). London: Springer.
  • Eskelinen, H., & Ström, J.-P. (2007). DFM (A)-Aspects of an Advanced Cable Gland Design. In Tutkimusraportti/Research report-Lappeenrannan teknillinen yliopisto, Teknillinen tiedekunta, Konetekniikan osasto ( Research Report 73/2008). Faculty of Technology, Department of Mechanical Engineering, Lappeenranta University of Technology. ISBN 978-952-214-450-8 (PDF), ISSN .
  • Estorilio, C., & Simião, M. C. (2006). Cost reduction of a diesel engine using the DFMA method. Product Management & Development, 4, 95–103.
  • Isanaka, S. P., Sparks, T. E., Liou, F. F., & Newkirk, J. W. (2016). Design strategy for reducing manufacturing and assembly complexity of air-breathing Proton Exchange Membrane Fuel Cells (PEMFC). Journal of Manufacturing Systems, 38, 165–171.10.1016/j.jmsy.2015.10.004
  • Krumenauer, F., Matayoshi, C., da Silva, I., & Batalha, G. (2008). Concurrent engineering and DFMA approaches on the development of automotive panels and doors. Journal of Achievements in Materials and Manufacturing Engineering, 31, 690–698.
  • Meeker, D., & Rousmaniere, A. (1996). DFMA and its role in the integrated product development process. Retrieved from http://web.mit.edu/meeker/Public/DFMAandIPDP.pdf
  • Priti, A. (2002). Consumer durables industry – Surviving the slowdown. Retrieved from http://www.crisil.com/Ratings/Commentary/CommentaryDocs/consumerdurables0302.pdf
  • Raucent, B., Nederlandt, C., & Johnson, D. (1998). Plastic snapfit fastener design. The International Journal of Advanced Manufacturing Technology, 14, 185–198.10.1007/BF01188414
  • Rosato, D. V. (2003). Plastics engineered product design. Oxford: Elsevier.
  • Schmidt, S. (1998). Preventive optimisation of costs and quality for the total life cycle-design for manufacture, assembly, service, environment (DFMA). In Society of Automotive Engineers (SAE) (HRSG): Total Life Cycle Conference Proceedings (Graz 1998) (pp. 49–56). Warrendale: SAE. doi:10.4271/982166
  • Selvaraj, P., Radhakrishnan, P., & Adithan, M. (2009). An integrated approach to design for manufacturing and assembly based on reduction of product development time and cost. The International Journal of Advanced Manufacturing Technology, 42, 13–29.10.1007/s00170-008-1580-8
  • Suresh, P., Ramabalan, S., & Natarajan, U. (2016). Integration of DFE and DFMA for the sustainable development of an automotive component. International Journal of Sustainable Engineering, 9, 107–118.10.1080/19397038.2015.1096313
  • Tucci, M., De Carlo, F., Borgia, O., & Fanciullacci, N. (2014). Accelerated life tests as an integrated methodology for product design, qualification and production control: a case study in household appliances. Production & Manufacturing Research, 2, 112–127.