Modeling strategies were developed in order to reduce the computational effort required to simulate oxidation in textile composites. The oxidation behavior in heterogeneous configurations was found to be complex and dependent on a number of factors. A decoupled subdomain strategy for analyzing textile composites was evaluated and used to simulate the oxidation behavior in a graphite/PMR-15 plain-weave composite.
Colin X. and Verdu J.Thermal aging and lifetime prediction for organic matrix composites. Plast Rubber Compos2003; 32: 349-356.
2.
Colin X., Marais C. and Verdu J.A new method for predicting the thermal oxidation of thermoset matrices: application to an amine cross-linked epoxy. Polym Test2001; 20: 795-803.
3.
Pochiraju KV and Tandon GPTime dependent composite material behavior under thermo-oxidative environmental conditions. In: Proceedings of IMECE, Anaheim, CA, 2004.
4.
Pochiraju KV and Tandon GPModeling thermo-oxidation layer growth in high temperature resins. J Eng Mater Technol2006; 128: 107-116.
5.
Bowles KJ, Jayne D., Leonhardt TA and Bors D.Thermal stability relationships between PMR-15 resin and its composites. NASA Technical Memorandum106285, 1993.
6.
Bowles KJ, Papadopoulos DS, Inghram LL, McCorkle LS and Klan OVLongtime durability of PMR-15 matrix polymer at 204, 260, 288 and 316°C . NASA/TM-2001-210602, 2001.
7.
Tsuji LC, McManus HL and Bowles KJMechanical properties of degraded PMR-15 resin. NASA Technical Report, 1998-208487, pp 1-18, 1998.
8.
Abdeljaoued K.Thermal oxidation of PMR-15 polymer used as a matrix in composite materials reinforced with carbon fibers. MS Thesis, Ecole Nationale Superieure des Arts et Metiers, Paris, 1999.
9.
Johnson TF and Gates TSHigh temperature polyimide materials in extreme temperature environments. In: AIAA paper 2001-1214 42nd AIAA/ASME/ASCE/AHS/ASC structures, structural dynamics and materials conference and exhibition, Seattle, WA, 2001.
10.
Schoeppner GA, Tandon GP and Ripberger ERAnisotropic oxidation and weight loss in PMR-15 composites. Composites Part A2007; 38: 890-904.
11.
Nam JD and Seferis JCAnisotropic thermo-oxidative stability of carbon fiber reinforced polymeric composites. SAMPE Quarterly1992; 24: 10-18.
12.
Nelson JBThermal aging of graphite polyimide composites. In: O’Brien TK (ed.) Long-term behavior of composites . ASTM STP813. Philadelphia: American Society for Testing and Materials , 1983, pp.206-221.
13.
Bowles KJ and Meyers A.Specimen geometry effects on graphite/PMR-15 composites during thermo-oxidative aging. In: Proceedings 31st international SAMPE symposium, 7-10 April, Anaheim, CA, 1986.
14.
Bowles KJ, Tsuji L., Kamvouris J. and Roberts GDLong-term isothermal aging effects on weight loss, compression properties, and dimensions of T650-35 fabric-reinforced PMR-15 composites - data. NASA TM-2003-211870, 2003.
15.
Varghese J. and Whitcomb J.Micromechanics of oxidation in composites with impermeable fibers. J Compos Mater2009 ; 43(19): 2011-2043.
16.
Pochiraju K. and Tandon G.Modeling thermo-oxidative layer growth in high-temperature resin. J Eng Mater Technol2007; 128(1): 107-116.
17.
Tandon G., Pochiraju K. and Schoeppner G.Modeling oxidative development in PMR-15 resin. J Polym Degrad Stab2006; 91(8): 1861-1869.
18.
Schoeppner GA , Tandon GP and Pochiraju KVPredicting thermooxidative degradation and performance of high-temperature polymer matrix composites. In: Kwon, Young W, Allen, David H, Talreja and Ramesh R (eds) Multiscale modeling and simulation of composite materials and structures. Chapter 9. New York, NY: Springer, 2007, p.359.
19.
Lafarie-Frenot MC, Grandidier JC, Gigliotti M., et al. Thermo-oxidation behaviour of composite materials at high temperatures: a review of research activities carried out within the COMEDI program. Polym Degrad Stab2010; 95(6): 965-974.