Liakat, M., & Khonsari, M. M. (2015). Entropic characterization of metal fatigue with stress
concentration. International Journal of Fatigue, 70, 223–234.
Lin, M., & Basaran, C. (2005). Electromigration induced stress analysis using fully coupled
mechanical-diffusion equations with nonlinear material properties. Computational Materials
Science, 34(1), 82–98.
Naderi, M., Amiri, M., & Khonsari, M. M. (2010). On the thermodynamic entropy of fatigue
fracture. Proceedings of the Royal Society A, 466, 423–438.
Onsager, L. (1931). Reciprocal relations in irreversible processes I. Physics Review, 37, 405–426.
Onsager, L. (1932). Reciprocal relations in irreversible processes II. Physics Review, 38,
2265–2279.
Osara, J. A., & Bryant, M. D. (2019a). A thermodynamic model for lithium-ion battery degradation:
Application of the degradation-entropy generation theorem. Inventions, 4, 23.
Osara, J. A., & Bryant, M. D. (2019b). Thermodynamics of fatigue: Degradation-entropy generation methodology for system and process characterization and failure analysis. Entropy, 21(7),
685.
Ostoja-Starzewski, M., & Raghavan, B. V. (2016). Continuum mechanics versus violations of the
second law of thermodynamics. Journal of Thermal Stresses, 39(6), 734–749.
Ostoja-Starzewski, M. (2016). Second law violations, continuum mechanics, and permeability.
Continuum Mechanics and Thermodynamics, 28(1–2), 489–501.
Pauli, W. (1973). Statistical mechanics. Cambridge, MA: MIT Press.
Planck, M. (1901). On the Law of Distribution of Energy in the Normal Spectrum, Annalen der
Physik, vol. 4., p 553
Planck, M. (1906). Section 134: Entropie und Warscheinlichkeit. In Vorlesungen uber die theorie
der wurmestrahlung. Leipzig, Germany: J.A. Barth.
Prigogine, I. (1955). Introduction to thermodynamics of irreversible processes. Springfield, IL:
Charles C. Thomas Publisher.
Prigogine, I. (1957). The molecular theory of solutions. Amsterdam: North Holland Publishing
Company.
Prigogine, I. (1961). Introduction to thermodynamics of irreversible processes (2nd ed.).
New York: Interscience. OCLC 219682909.
Prigogine, I. (1968). Introduction to thermodynamics of irreversible processes. New York, NY:
Wiley-Interscience.
Prigogine, I., & Defay, R. (1954). Chemical thermodynamics. London: Longmans Green and Co..
Prigogine, I., & Herman, R. (1971). Kinetic theory of vehicular traffic. New York: American
Elsevier. ISBN 0-444-00082-8.
Prigogine, I., & Nicolis, G. (1977). Self-organization in non-equilibrium systems. New York:
Wiley. ISBN 0-471-02401-5.
Reprinted in Wiss. Abhandlungen, Vol. II, reprint 42, p. 164–223.
Rice, J. R. (1971). Inelastic constitutive relations for solids: An internal-vraibale theory and its
application to metal plasticity. Journal of the Mechanics and Physics of Solids, 19, 433–455.
Rice, J. R. (1977). Thermodynamics of the quasi-static growth of griffith cracks. Journal of the
Mechanics and Physics of Solids, 26, 61–78.
Rivas, A., & Martin-Delgado, M. A. (2017). Topological heat transport and symmetry-protected
boson currents. Scientific Reports, 7(1), 6350. https://doi.org/10.1038/s41598-017-06722-x.
Rivlin, R. S. (1981). Some comments on the endochronic theory of plasticity. International Journal
of Solids and Structures, 17(2), 231–248.
Searles, D. J., & Evans, D. J. (2004). Fluctuations relations for nonequilibrium systems. Australian
Journal of Chemistry, 57(12), 1119–1123. https://doi.org/10.1071/ch04115.
Sharp, K. and Matschinsky, F. (2015) Translation of Ludwig Boltzmann’s paper “on the relationship between the second fundamental theorem of the mechanical theory of heat and probability
calculations regarding the conditions for thermal equilibrium”. Entropy, 17, 1971–2009.
Sherbakov, S. S., & Sosnovskiy, L. A. (2010). Mechanics of tribo-fatigue systems (p. 407). Minsk,
Belarus: BSU.
200
4 Unified Mechanics Theory
concentration. International Journal of Fatigue, 70, 223–234.
Lin, M., & Basaran, C. (2005). Electromigration induced stress analysis using fully coupled
mechanical-diffusion equations with nonlinear material properties. Computational Materials
Science, 34(1), 82–98.
Naderi, M., Amiri, M., & Khonsari, M. M. (2010). On the thermodynamic entropy of fatigue
fracture. Proceedings of the Royal Society A, 466, 423–438.
Onsager, L. (1931). Reciprocal relations in irreversible processes I. Physics Review, 37, 405–426.
Onsager, L. (1932). Reciprocal relations in irreversible processes II. Physics Review, 38,
2265–2279.
Osara, J. A., & Bryant, M. D. (2019a). A thermodynamic model for lithium-ion battery degradation:
Application of the degradation-entropy generation theorem. Inventions, 4, 23.
Osara, J. A., & Bryant, M. D. (2019b). Thermodynamics of fatigue: Degradation-entropy generation methodology for system and process characterization and failure analysis. Entropy, 21(7),
685.
Ostoja-Starzewski, M., & Raghavan, B. V. (2016). Continuum mechanics versus violations of the
second law of thermodynamics. Journal of Thermal Stresses, 39(6), 734–749.
Ostoja-Starzewski, M. (2016). Second law violations, continuum mechanics, and permeability.
Continuum Mechanics and Thermodynamics, 28(1–2), 489–501.
Pauli, W. (1973). Statistical mechanics. Cambridge, MA: MIT Press.
Planck, M. (1901). On the Law of Distribution of Energy in the Normal Spectrum, Annalen der
Physik, vol. 4., p 553
Planck, M. (1906). Section 134: Entropie und Warscheinlichkeit. In Vorlesungen uber die theorie
der wurmestrahlung. Leipzig, Germany: J.A. Barth.
Prigogine, I. (1955). Introduction to thermodynamics of irreversible processes. Springfield, IL:
Charles C. Thomas Publisher.
Prigogine, I. (1957). The molecular theory of solutions. Amsterdam: North Holland Publishing
Company.
Prigogine, I. (1961). Introduction to thermodynamics of irreversible processes (2nd ed.).
New York: Interscience. OCLC 219682909.
Prigogine, I. (1968). Introduction to thermodynamics of irreversible processes. New York, NY:
Wiley-Interscience.
Prigogine, I., & Defay, R. (1954). Chemical thermodynamics. London: Longmans Green and Co..
Prigogine, I., & Herman, R. (1971). Kinetic theory of vehicular traffic. New York: American
Elsevier. ISBN 0-444-00082-8.
Prigogine, I., & Nicolis, G. (1977). Self-organization in non-equilibrium systems. New York:
Wiley. ISBN 0-471-02401-5.
Reprinted in Wiss. Abhandlungen, Vol. II, reprint 42, p. 164–223.
Rice, J. R. (1971). Inelastic constitutive relations for solids: An internal-vraibale theory and its
application to metal plasticity. Journal of the Mechanics and Physics of Solids, 19, 433–455.
Rice, J. R. (1977). Thermodynamics of the quasi-static growth of griffith cracks. Journal of the
Mechanics and Physics of Solids, 26, 61–78.
Rivas, A., & Martin-Delgado, M. A. (2017). Topological heat transport and symmetry-protected
boson currents. Scientific Reports, 7(1), 6350. https://doi.org/10.1038/s41598-017-06722-x.
Rivlin, R. S. (1981). Some comments on the endochronic theory of plasticity. International Journal
of Solids and Structures, 17(2), 231–248.
Searles, D. J., & Evans, D. J. (2004). Fluctuations relations for nonequilibrium systems. Australian
Journal of Chemistry, 57(12), 1119–1123. https://doi.org/10.1071/ch04115.
Sharp, K. and Matschinsky, F. (2015) Translation of Ludwig Boltzmann’s paper “on the relationship between the second fundamental theorem of the mechanical theory of heat and probability
calculations regarding the conditions for thermal equilibrium”. Entropy, 17, 1971–2009.
Sherbakov, S. S., & Sosnovskiy, L. A. (2010). Mechanics of tribo-fatigue systems (p. 407). Minsk,
Belarus: BSU.
200
4 Unified Mechanics Theory
