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Finite Element Simulation of Compression Molding of Woven Fabric Carbon Fiber/Epoxy Composites: Part I Material Model Development

Journal Article
2016-01-0498
ISSN: 1946-3979, e-ISSN: 1946-3987
Published April 05, 2016 by SAE International in United States
Finite Element Simulation of Compression Molding of Woven Fabric Carbon Fiber/Epoxy Composites: Part I Material Model Development
Sector:
Citation: Li, Y., Zhao, Q., Mirdamadi, M., Zeng, D. et al., "Finite Element Simulation of Compression Molding of Woven Fabric Carbon Fiber/Epoxy Composites: Part I Material Model Development," SAE Int. J. Mater. Manf. 9(3):729-736, 2016, https://doi.org/10.4271/2016-01-0498.
Language: English

References

  1. Hernandez , S. , Sket , F. , Molina-Aldareguia , J.M. , Gonzalez , C. et al. Effect of Curing Cycle on Void Distribution and Interlaminar Shear Strength in Polymer Matrix Composites Composites Science and Technology 71 10 1331 1341 2011 10.1016/j.compscitech.2011.05.002
  2. Liu , L. , Zhang , B. , Wang , D. , Wu , Z. Effects of Cure Cycles on Void Content and Mechanical Properties of Composite Laminates Composite Structures 73 3 303 309 2006 10.1016/j.compstruct.2005.02.001
  3. Sudarisman , Davies, I.J. The Effect of Processing Parameters on the Flexural Properties of Unidirectional Carbon Fibre-Reinforced Polymer (CFRP) Composites Materials Science and Engineering A 498 1-2 65 68 2008 10.1016/j.msea.2007.11.148
  4. CompositesWorld Fabrication Methods http://www.compositesworld.com/articles/fabrication-methods Nov. 2015
  5. Ishikawa T. , Chou T.W. Elastic Behavior of Woven Hybrid Composites Journal of Composite Materials 16 1 2 19 1982 10.1177/002199838201600101
  6. Naik , N.K. , Shembekar , P.S. Elastic Behavior of Woven Fabric Composites: I - Lamina Analysis Journal of Composites Materials 26 15 2196 2225 1992 10.1177/002199839202601502
  7. Chung , P.W. , Tamma K.K. Woven Fabric Composites -Developments in Engineering Bounds, Homogenization and Applications International Journal of Numerical Method in Engineering 45 12 1757 1790 10.1002/(SICI)1097-0207(19990830)45:12<1757::AID-NME653>3.0.CO;2-O
  8. Witcomb , J.D. Three-dimensional Stress Analysis of Plain Weave Composites O’Brien , T.K. Composites Materials: Fatigue and Fracture, 3rd volume Philadephia ASTM 1991 0-8031-1419-2
  9. Peng , X.Q. , Cao J. A Continuum Mechanics Based Non-Orthogonal Constitutive Model for Woven Composites Composites Part A 36 6 859 874 2005 10.1016/j.compositesa.2004.08.008
  10. Tabiei A. , Jiang , Y. Woven Fabric Composite Material Model with Material Nonlinearity for nonlinear Finite Element Simulation International Journal of Solids and Structure 136 18 2757 2771 1999 10.1016/S0020-7683(98)00127-9
  11. Ivanov , I. , Tabiei , A. Three-dimensional Computational Micro-mechanical Model for Woven Fabric Composites Composite Structures 54 4 489 496 2001 10.1016/S0263-8223(01)00121-0
  12. Kamal , M.R. , Sourour , S. Kinetics and Thermal Characterization of Thermoset Cure Polymer Engineering and Science 13 1 59 64 1973 10.1002/pen.760130110
  13. DiBenedetto A.T. Prediction of Glass Transition Temperature of Polymer: A Model Based on the Principle of Corresponding States Journal of Polymer Science Part B 25 9 1949 1969 1987 10.1002/polb.1987.090250914
  14. Pascault , J.P. , Williams R.J. Glass Transition Temperature versus Conversion Relationships for Thermosetting Polymers Journal of Polymer Science Part B 28 1 85 95 1990 10.1002/polb.1990.090280107
  15. Hale , A. , Macosko , C.W. , Bair , H.E. Glass Transition Temperature as a Function of Conversion in Thermosetting Polymers Macromolecules 24 9 2610 2621 1991 10.1021/ma00009a072
  16. O'Brien , D.J. , Mather , P.T. , White S.R. Viscoelastic Properties of an Epoxy Resin During Curing Journal of Composite Materials 35 10 883 904 10.1177/002199801772662442
  17. Menzel , S. Zur Berechnung von Klebverbindungen hybrider Karosseriestrukturen beim Lacktrocknungsprozess PhD thesis Technical University of Dresden Dresden, Germany 2011
  18. Eom , Y. , Boogh , L. , Michaud , V. , Sunderland , P. , Manson , J. Time-Cure-Temperature Superposition for the Prediction of Instantaneous Viscoelastic Properties during Cure Polymer Engineering and Science 40 6 1281 1292 2000 10.1002/pen.11256
  19. Patham , B. COMSOL Implementation of a Viscoelastic Model with Cure-Temperature-Time Superposition for Predicting Cure Stresses and Springback in a Thermoset Resin presented as Proceedings of the COMSOL Conference 2009 Bangalore 2009 Bangalore, India

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