Basaran, C., & Lin, M. (2008). Damage mechanics of electromigration induced failure. Mechanics
of Materials, 40, 66–79.
Basaran, C., Lin, M., & Ye, H. (2003). A thermodynamic model for electrical current induced
damage. International Journal of Solids and Structures, 40(26), 7315–7327.
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, C. (2008b). Time dependent behavior of a particle filled
composite PMMA/ATH at elevated temperatures. Journal of Composite Materials, 42(19),
2003–2025.
Basaran, C., & Tang, H. (2002). Implementation of a thermodynamic framework for damage
mechanics of solder interconnects in microelectronic packaging. International Journal of
Damage Mechanics, 11(1), 87–108.
Basaran, C., & Yan, C. Y. (1998). A thermodynamic framework for damage mechanics of solder
Joints. Transactions of ASME Journal of Electronic Packaging, 120, 379–384.
Basaran, C., Zhao, Y., Tang, H., & Gomez, J. (2005). A damage mechanics based unified
constitutive model for solder alloys. Transactions of ASME Journal of Electronic Packaging,
127(3), 208–214.
Bazant, Z. P. (1972). Thermodynamics of interacting continua with surfaces and creep analysis of
concrete structures. Nuclear Engineering Structures and Design, 20, 477–505.
Beven, K. (2006). A manifesto for the equifinality thesis. Journal of Hydrology, 320(1), 18–36.
Bin, N., Jamal, M., Kumar, A., Rao, C. L., & Basaran, C. (2020). Low cycle fatigue life prediction
using unified mechanics theory in Ti–6Al–4V alloys. Entropy, 22(1), 24.
Boltzmann, L. (1877). Sitzungberichte der Kaiserlichen Akademie der Wissenschaften.
Mathematisch-Naturwissen Classe. Abt. II, LXXVI, pp 373–435 (Wien. Ber. 1877, 76:373–
435). Reprinted in Wiss. Abhandlungen, Vol. II, reprint 42, p. 164–223, Barth, Leipzig, 1909.
Callen, H. B. (1985). Thermodynamics and an introduction to Thermostatistics (2nd ed.).
New York: John Wiley & Sons.
Chalmers, M. (2016). Second law of thermodynamics “broken”. New Scientist. Retrieved 2016-0209.
Chudnovsky, A. (1973). Fracture of solids. In the book Scientific Papers on Elasticity and Plasticity,
N9, pp. 3–43, Leningrad 1973, (Russian).
Chudnovsky, A. (1984). Statistics and thermodynamics of fracture. International Journal of
Engineering Science, 22(8–10), 989–997.
Cuadras, A., Crisóstomo, J., Ovejas, V. J., & Quilez, M. (2015). Irreversible entropy model for
damage diagnosis in resistors. Journal of Applied Physics, 118, 165103.
Cuadras, A., Romero, R., & Ovejas, V. J. (2016). Entropy characterisation of overstressed capacitors for lifetime prediction. Journal of Power Sources, 336, 272–278.
Cuadras, A., Yao, J., & Quilez, M. (2017). Determination of LEDs degradation with entropy
generation rate. Journal of Applied Physics, 122, 145702.
de Groot, S. R., & Mazur, P. (1962). Non-equilibrium thermodynamics. Amsterdam/New York:
North-Holland/Wiley.
DeHoff, R. T. (1993). Thermodynamics in materials science. McGraw Hill.
Ehrenfest, P., & Trkal, V. (1921). Deduction of the dissociation-equilibrium from the theory of
quanta and a calculation of the chemical constant based on this. Ann. Phys., 65, 609–628.
Euler, L. (1736). Mechanica sive motus scientia analytice exposita.
Evans, D. J., Cohen, E. G. D., & Morriss, G. P. (1993). Probability of second law violations in
shearing steady states. Physical Review Letters, 71(15), 2401–2404.
Getling, A. V. (1998). Rayleigh–Bénard convection: Structures and dynamics. Singapore: World
Scientific. ISBN 978-981-02-2657-2.
Glansdorff, P., & Prigogine, I. (1971). Thermodynamics theory of structure, stability and fluctuations. London: Wiley-Interscience.
198
4 Unified Mechanics Theory
of Materials, 40, 66–79.
Basaran, C., Lin, M., & Ye, H. (2003). A thermodynamic model for electrical current induced
damage. International Journal of Solids and Structures, 40(26), 7315–7327.
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, C. (2008b). Time dependent behavior of a particle filled
composite PMMA/ATH at elevated temperatures. Journal of Composite Materials, 42(19),
2003–2025.
Basaran, C., & Tang, H. (2002). Implementation of a thermodynamic framework for damage
mechanics of solder interconnects in microelectronic packaging. International Journal of
Damage Mechanics, 11(1), 87–108.
Basaran, C., & Yan, C. Y. (1998). A thermodynamic framework for damage mechanics of solder
Joints. Transactions of ASME Journal of Electronic Packaging, 120, 379–384.
Basaran, C., Zhao, Y., Tang, H., & Gomez, J. (2005). A damage mechanics based unified
constitutive model for solder alloys. Transactions of ASME Journal of Electronic Packaging,
127(3), 208–214.
Bazant, Z. P. (1972). Thermodynamics of interacting continua with surfaces and creep analysis of
concrete structures. Nuclear Engineering Structures and Design, 20, 477–505.
Beven, K. (2006). A manifesto for the equifinality thesis. Journal of Hydrology, 320(1), 18–36.
Bin, N., Jamal, M., Kumar, A., Rao, C. L., & Basaran, C. (2020). Low cycle fatigue life prediction
using unified mechanics theory in Ti–6Al–4V alloys. Entropy, 22(1), 24.
Boltzmann, L. (1877). Sitzungberichte der Kaiserlichen Akademie der Wissenschaften.
Mathematisch-Naturwissen Classe. Abt. II, LXXVI, pp 373–435 (Wien. Ber. 1877, 76:373–
435). Reprinted in Wiss. Abhandlungen, Vol. II, reprint 42, p. 164–223, Barth, Leipzig, 1909.
Callen, H. B. (1985). Thermodynamics and an introduction to Thermostatistics (2nd ed.).
New York: John Wiley & Sons.
Chalmers, M. (2016). Second law of thermodynamics “broken”. New Scientist. Retrieved 2016-0209.
Chudnovsky, A. (1973). Fracture of solids. In the book Scientific Papers on Elasticity and Plasticity,
N9, pp. 3–43, Leningrad 1973, (Russian).
Chudnovsky, A. (1984). Statistics and thermodynamics of fracture. International Journal of
Engineering Science, 22(8–10), 989–997.
Cuadras, A., Crisóstomo, J., Ovejas, V. J., & Quilez, M. (2015). Irreversible entropy model for
damage diagnosis in resistors. Journal of Applied Physics, 118, 165103.
Cuadras, A., Romero, R., & Ovejas, V. J. (2016). Entropy characterisation of overstressed capacitors for lifetime prediction. Journal of Power Sources, 336, 272–278.
Cuadras, A., Yao, J., & Quilez, M. (2017). Determination of LEDs degradation with entropy
generation rate. Journal of Applied Physics, 122, 145702.
de Groot, S. R., & Mazur, P. (1962). Non-equilibrium thermodynamics. Amsterdam/New York:
North-Holland/Wiley.
DeHoff, R. T. (1993). Thermodynamics in materials science. McGraw Hill.
Ehrenfest, P., & Trkal, V. (1921). Deduction of the dissociation-equilibrium from the theory of
quanta and a calculation of the chemical constant based on this. Ann. Phys., 65, 609–628.
Euler, L. (1736). Mechanica sive motus scientia analytice exposita.
Evans, D. J., Cohen, E. G. D., & Morriss, G. P. (1993). Probability of second law violations in
shearing steady states. Physical Review Letters, 71(15), 2401–2404.
Getling, A. V. (1998). Rayleigh–Bénard convection: Structures and dynamics. Singapore: World
Scientific. ISBN 978-981-02-2657-2.
Glansdorff, P., & Prigogine, I. (1971). Thermodynamics theory of structure, stability and fluctuations. London: Wiley-Interscience.
198
4 Unified Mechanics Theory
