References
Basaran, C., & Nie, S. (2004). An irreversible thermodynamic theory for damage mechanics of
solids. International Journal of Damage Mechanics, 13(3), 205–224.
Basaran, C., & Nie, S. (2007). A thermodynamics based damage mechanics model for particulate
composites. International Journal of Solids and Structures, 44, 1099–1114.
Basaran, C., Nie, S., Hutchins, S., & Ergun, H. (2008a). Influence of interfacial bond strength on
fatigue life and mechanical behavior of a particulate composite: An experimental study.
International Journal of Damage Mechanics, 17(2), 123–148.
Basaran, C., Nie, S., & Hutchins, C. (2008b). Time dependent behavior of a particle filled
composite PMMA/ATH at elevated temperatures. Journal of Composite Materials, 42(19),
2003–2025.
Cheng, W.-M., Miller, G. A., Manson, J. A., Hertzberg, R. W., & Sperling, L. H. (1990a).
Mechanical behavior of poly(methyl methacrylate). Part 1 Tensile strength and fracture toughness. Journal of Materials Science, 25, 1917–1923.
Cheng, W.-M., Miller, G. A., Manson, J. A., Hertzberg, R. W., & Sperling, L. H. (1990b).
Mechanical behavior of poly(methyl methacrylate). Part 2 Temperature and frequency effects
on the fatigue crack propagation behavior. Journal of Materials Science, 25, 1924–1930.
Cheng, W.-M., Miller, G. A., Manson, J. A., Hertzberg, R. W., & Sperling, L. H. (1990c).
Mechanical behavior of poly(methyl methacrylate). Part 3 Activation processes for fracture
mechanism. Journal of Materials Science, 25, 1931–1938.
Christensen, R. M., & Lo, K. H. (1979). Solutions for effective shear properties in three phase
sphere and cylinder models. Journal of the Mechanics and Physics of Solids, 27, 315–330.
Eshelby, J. D. (1957). The deformation of the elastic field of an ellipsoidal inclusion, and related
problems. Proceedings of the Royal Society of London, Series A, Mathematical Science, 241
(1226), 376–396.
Hashin, Z. (1962). The elastic moduli of heterogeneous materials. Transaction of the ASME,
Journal of Applied Mechanics, 29, 143–150.
Hashin, Z. (1968). Assessment of the self consistent scheme approximation: Conductivity of
particulate composites. Journal of Composite Materials, 2(3), 284–301.
Hashin, Z. (1990). Thermoelastic properties and conductivity of carbon/carbon fiber composites.
Mechanics of Materials, 8, 293–308.
Simulation
0.4
0.3
0.2
T.S.I
0.1
0
0
100
200
300
Number of Cycles
400
500
600
Experimental Measurement
Fig. 6.32 Comparison of
TSI at 750
C with strain
amplitude of 0.6%
References
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