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MAC/GMC References
Many of the publications listed below are available as full-text, searchable PDF files that may be accessed via the NASA Technical Reports Server.
  1. Aboudi, J. (1987) "Damage in Composites - Modeling of Imperfect Interfaces" Composites Science and Technology 28, 103-128.
  2. Aboudi, J. (1989) "Micromechanical Analysis of Composites by the Method of Cells" Applied Mechanics Reviews 42(7), 193-221.
  3. Aboudi, J. (1991) Mechnics of Composite Materials: A Unified Micromechanical Approach. Elsevier, New York.
  4. Aboudi, J. (1995) "Micromechanical Analysis of Thermoinelastic Multiphase Short-Fiber Composites" Composites Engineering 5, 839-850.
  5. Aboudi, J. (2000) "Micromechanical Prediction of the Effective Behavior of Fully Coupled Electro-Magneto-Thermo-Elastic Multiphase Composites" NASA/CR-2000-209787.
  6. Aboudi, J., Pindera, M.-J., and Arnold, S.M. (2001) "Linear Thermoelastic Higher-Order Theory for Periodic Multiphase Materials" Journal of Applied Mechanics 68(5), 697-707.
  7. Aboudi, J., Pindera, M.-J., and Arnold, S.M. (2002) "Higher-Order Theory for Periodic Multiphase Materials with Inelastic Phases" International Journal of Plasticity 19, 805-847. See also NASA/TM-2002-211469.
  8. Achenbach, J.D. and Zhu, H. (1989) "Effect of Interfacial Zone on Mechanical Behavior and Failure of Fiber-Reinforced Composites" Journal of the Mechanics and Physics of Solids 37(3), 381-393.
  9. Arnold, S.M. and Kruch, S. (1994) "Differential Continuum Damage Mechanics Models for Creep and Fatigue of Unidirectional Metal Matrix Composites" International Journal of Damage Mechanics 3(2), 170-191.
  10. Bednarcyk, B.A. (2000) "Modeling Woven Polymer Matrix Composites With MAC/GMC" NASA/CR-2000-210370.
  11. Bednarcyk, B.A. (2002) "An Inelastic Micro/Macro Theory for Hybrid Smart/Metal Composites" Composites: Part B 34, 175-197. See also NASA/CR-2002-208521.
  12. Bednarcyk, B.A. and Arnold, S.M. (2001) "Micromechanics-Based Deformation and Failure Prediction for Longitudinally Reinforced Titanium Composites" Composites Science and Technology 61, 705-729.
  13. Bednarcyk, B.A. and Arnold, S.M. (2002a) "Transverse Tensile and Creep Modeling of Continuously Reinforced Titanium Composites with Local Debonding" International Journal of Solids and Structures 39, 1987-2017.
  14. Bednarcyk, B.A. and Arnold, S.M. (2002b) "Fully Coupled Micro/Macro Deformation, Damage, and Failure Prediction for SiC/Ti-15-3 Laminates" Journal of Aerospace Engineering 14 (3), 74-83.
  15. Bednarcyk, B.A. and Arnold, S.M. (2003) "Micromechanics-Based Modeling of Woven Polymer Matrix Composites" AIAA Journal 41 (9), 1788-1796.
  16. Bednarcyk, B.A., Arnold, S.M., Aboudi, J., and Pindera, M.-J. (2004) "Local Field Effects in Titanium Matrix Composites Subject to Fiber-Matrix Debonding" International Journal of Plasticity 20, 1707-1737.
  17. Bednarcyk, B.A. and Pindera, M.-J. (2000) "Inelastic Response of a Woven Carbon/Copper Composite - Part II: Micromechanics Model" Journal of Composite Materials 34(4), 299-331.
  18. Curtin, W.A. (1991) "Theory of Mechanical Properties of Ceramic-Matrix Composites" Journal of the American Ceramics Society 74(11), 2837-2845.
  19. Curtin, W.A. (1993) "Ultimate Strengths of Fibre-Reinforced Ceramics and Metals" Composites 24(2), 98-102.
  20. Goldberg, R.K., Comiskey, M.D., and Bednarcyk, B.A. (1999) "Micromechanics Analysis Code Post-Processing (MACPOST) User Guide Version 1.0" NASA/TM-1999-209062.
  21. Herakovich, C.T. (1998) Mechanics of Fibrous Composites. John Wiley & Sons, New York.
  22. Jones, R.M. (1975) Mechanics of Composite Materials, Hemisphere Publishing Corp., New York.
  23. Jones, J.P. and Whittier, J.S. (1967) "Waves at Flexibly Bonded Interfaces" Journal of Applied Mechanics 34, 905-909.
  24. Jones, R.M. (1974) "Stiffness of Orthotropic Materials and Laminated Fiber-Reinforced Composites" AIAA Journal, January, pp. 112-114.
  25. Jones, R.M. (1975) Mechanics of Composite Materials, Hemisphere Publishing Corp., New York.
  26. Pahr, D.H. and Arnold, S.M. (2002) "The Applicability of the Generalized Method of Cells for Analyzing Discontinuously Reinforced Composites" Composites: Part B 33, 153-170.
  27. Paley, M. and Aboudi, J. (1992) "Micromechanical Analysis of Composites by the Generalized Cells Model" Mechanics of Materials 14, 127-139.
  28. Pindera, M.-J. and Bednarcyk, B.A. (1999) "An Efficient Implementation of the Generalized Method of Cells of Unidirectional, Multi-Phased Composites with Complex Microstructures" Composites: Part B 30(1), 87-105.
  29. Plastics Design Library (1995) Fatigue and Tribological Properties of Plastics and Elastomers. Plastics Design Library, William Andrew, Inc., Norwich, NY.
  30. Saleeb, A.F., Arnold, S.M., Castelli, M.G., Wilt, T.E., and Graf, W. (2001) "A General Hereditary Multimechanism-Based Deformation Model with Application to the Viscoelastoplastic Response of Titanium Alloys" International Journal of Plasticity 17, 1305-1350.
  31. Wilt, T.E. and Arnold, S.M. (1996) "Micromechanics Analysis Code (MAC) User Guide: Version 2.0" NASA-TM-107290.
  32. Wilt, T.E., Arnold, S.M., and Saleeb, A.F. (1997) "A Coupled/Uncoupled Computational Scheme for Deformation and Fatigue Damage Analysis of Unidirectional Metal Matrix Composites" in Applications of Continuum Damage Mechanics to Fatigue and Fracture, D.L. McDowell (ed.), ASTM STP 1315, American Society for Testing and Materials, 65-82.


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