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Articles

Design of experiment study of compression moulding of SMC

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Pages 426-431 | Published online: 02 Dec 2013

REFERENCES

  • H. G. Kia (ed.): ‘Sheet molding compounds: science and technology’, 257; 1993, Munich, Hanser.
  • A. Sjögren: ‘An approach towards avoidance of pinholes and blowouts in painted SMC’, Internationale AVK-TV, Tagung Baden, Baden, 2002.
  • M. S. Naidu and V. Kamaraju: ‘High voltage engineering’, 378; 1996, New York, McGraw-Hill.
  • E. Comte, D. Merhi, V. Michaud and J. A. E. Manson: ‘Void formation and transport during SMC manufacturing: effect of the glass fiber sizing’, Polym. Compos. , 2006, 27, (3), 289–298.
  • P. T. Odenberger, H. M. Andersson and T. S. Lundstrom: ‘Experimental flow-front visualisation in compression moulding of SMC’, Composites A, 2004, 35A, (10), 1125–1134.
  • H. Yamada, I. Mihata, T. Tomiyama and S. P. Walsh: ‘Investigation of the fundamental causes of pinholes in SMC moldings’, Proc. 47th Annual Conf., Composites Institute, Cincinatti, OH, USA, February 1992, The Society of the Plastics Industry, Inc.
  • G. Nilsson: unpublished work; 2006, Piteä, Swerea SICOMP AB.
  • K. T. Kim, J. H. Jeong and Y. T. Im: ‘Effect of molding parameters on compression molded sheet molding compounds parts’, J. Mater. Process. Technot , 1997, 67, (1-3), 105–111.
  • S. Boylan and J. M. Castro: ‘Effect of reinforcement type and length on physical properties, surface quality, and cycle time for sheet molding compound (SMC) compression molded parts’, J. Appl. Polym. Sci. , 2003, 90, (9), 2557–2571.
  • S. Le Corre, L. Orgeas, D. Favier, A. Tourabi, A. Maazouz and C. Venet: ‘Shear and compression behaviour of sheet moulding compounds’, Compos. Sci. Technot, 2002, 62, (4), 571–577.
  • S. Le Corre, P. Dumont, L. Orgeas and D. Favier: `Rheology of highly concentrated planar fiber suspensions', J. Rhea, 2005, 49, (5), 1029–1058.
  • C. M. Lin, C. I. Weng and C. T. Ho: ‘Anisotropy in sheet molding compounds during compression molding’, Polym. Compos. , 1997, 18, (5), 613–622.
  • B. D. Marjavaara, S. Ebermark and T. S. Lundstrom: ‘Compression moulding simulations of SMC using a multiobjective surrogate-based inverse modeling approach’, Mech. Compos. Mat. , 2009, 45, (5), 503–514.
  • P. J. Costigan, B. C. Fisher, and M. Kanagendra: ‘The rheology of SMC during compression molding, and resultant material proper-ties’, Proc. 40th Annual Conf., Reinforced Plastics/Composites Institute, Atlanta, GA, USA, January-February 1985, The Society of the Plastics Industry, Inc, Session 16E, pp. 1-12.
  • D. K. Kim, H. Y. Choi and N. Kim: ‘Experimental investigation and numerical-simulation of smc in compression molding’, J. Mater. Process. Technot, 1995, 49, (3-4), 333–344.
  • M. Rabinovich, K. L. Olsavsky, B. Leach, M. Cabrera-Rios and J. M. Castro: ‘Sheet molding compound characterization using spiral flow’, J. Appl. Polym. Sci. , 2008, 109, (4), 2465–2471.
  • T. H. Le, P. J. J. Dumont, L. Orgeas, D. Favier, L. Salvo and E. Boller: `X-ray phase contrast microtomography for the analysis of the fibrous microstructure of SMC composites', Composites A, 2008, 39A, (1), 91–103.
  • P. Dumont, L. Orgeas, D. Favier, P. Pizette and C. Venet: ‘Compression moulding of SMC: in situ experiments, modelling and simulation’, Composites A, 2007, 38A, (2), 353–368.
  • Minitab: ‘One hard-to-change factor answer#1068’ Technical support document; available at http://www.minitab.com/en-SE/ support, revised 7 July 2009.
  • D. C. Montgomery: ‘Design and analysis of experiments’, 643; 2005, Hoboken, NJ, John Wiley & Sons.
  • N. E. J. Olsson, T. S. Lundström and K. Olofsson: ‘Process study on compression moulding of SMC using factorial design’, Proc. 19th Int. Symp. on ‘Transport phenomena’ (ISTP-19), Reykjavik, Iceland, August 2008, University of Iceland, Paper 179.
  • T. S. Lundstrom, B. R. Gebart and C. Y. Lundemo: ‘Void formation in RTM’, J. Reinf Plast. Compos. , 1993, 12, (12), 1339–1349.
  • D. Merhi, E. Comte, V. Michaud and J. A. E. Manson: ‘Correlation between sizing formulation and compressive behavior of concentrated glass bundle suspensions’, Polym. Compos. , 2005, 26, (3), 370–376.

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