Sitzungberichte der Kaiserlichen Akademie der Wissenschaften. Mathematisch-Naturwissen
Classe. Abt. II, LXXVI 1877, pp 373–435.
Sosnovskiy, L. A. (1987). Statistical mechanics of fatigue damage (p. 288). Minsk, Belarus: Nauka
i Tekhnika. (In Russian).
Sosnovskiy, L. A. (1999). Tribo-fatigue: The dialectics of life (2nd ed., p. 116). Gomel, Belarus:
BelSUT Press. (In Russian).
Sosnovskiy, L. A. (2004). L-risk (mechanothermodynamics of irreversible damages) (p. 317).
Gomel, Belarus: BelSUT Press. (In Russian).
Sosnovskiy, L. A. (2005). Tribo-fatigue: Wear-fatigue damage and its prediction (foundations of
engineering mechanics) (p. 424). Berlin/Heidelberg, Germany: Springer.
Sosnovskiy, L. A. (2007). Mechanics of wear-fatigue damage (p. 434). Gomel, Belarus: BelSUT
Press.
Sosnovskiy, L. A. (2009). Life field and golden proportions. Nauka i Innovatsii, 79, 26–33. (In
Russian).
Sosnovskiy, L. A., & Sherbakov, S. S. (2012). Mechanothermodynamical system and its behavior.
Continuum Mechanics and Thermodynamics, 24, 239–256.
Sosnovskiy, L. A., & Sherbakov, S. S. (2015). Mechanothermodynamics. Springer.
Sosnovskiy, L. A., & Sherbakov, S. S. (2016). Mechanothermodynamic entropy and analysis of
damage state of complex systems. Entropy, 18(7), 268.
Sosnovskiy, L. A., & Sherbakov, S. S. (2017). A model of mechanothermodynamic entropy in
tribology. Entropy, 19, 115.
Sosnovskiy, L. A., & Sherbakov, S. S. (2019). On the development of mechanothermodynamics as
a new branch of physics. Entropy, 21(12), 1188.
Suhir, E. (2019). Failure Oriented Accelerated Testing (FOAT) Boltzmann Arrnhenius Zhurkov
Equation (BAZ) and theor application in aerospace microelectronics and photonics reliability
engineering. International Journal of Aeronautical Science and Aerospace Research, 6(3),
185–191.
Swalin, R. A. (1972). Thermodynamic of solids. New York, NY: John Wiley & Sons.
Swendsen, R. H. (2006). Statistical mechanics of colloids and Boltzmann’s definition of the
entropy. American Journal of Physics, 74, 187–190.
Tang, H., & Basaran, C. (2003). A damage mechanics based fatigue life prediction model. Transactions of ASME, Journal of Electronic Packaging, 125(1), 120–125.
Temfack, T., & Basaran, C. (2015). Experimental verification of a thermodynamic fatigue life
prediction model. Materials Science and Technology, 31(13), 2015.
Turing, A. M. (1952). The chemical basis of morphogenesis (PDF). Philosophical Transactions of
the Royal Society of London B, 237(641), 37–72. https://doi.org/10.1098/rstb.1952.0012.
Bibcode: 1952RSPTB.237...37T. JSTOR 92463.
Valanis, K. C. (1971). International Journal of Non-Linear Mechanics, 6(3), 337–360.
Valanis, K. C., & Komkov, V. (1980). Irreversible thermodynamics from the point of view of
internal variable theory/A Lagrangian formulation, – Archiwum Mechaniki Stosowanej, rcin.
org.pl.
Van Kampen, N. G. (1984). The Gibbs paradox. In W. E. Parry (Ed.), Essays in theoretical physics
in honour of Dirk ter Haar (pp. 303–312). Oxford, UK: Pergamon.
Wassim M Haddad, (2019). A dynamical systems theory of thermodynamics, Princeton University
press.
Wassim M Haddad, Qing Hui, Sergey G Nersesov, Vijaysekhar Chellaboina, (2005). Thermodynamic modeling, energy equipartition, and nonconservation of entropy for discrete-time dynamical systems, J. of Advances in Difference Equations, Volume 2005, Issue 3, Pp. 248040,
Springer International Publishing.
Wang, J., & Yao, Y. (2017). An entropy based low-cycle fatigue life prediction model for solder
materials. Entropy, 19(10), 503.
Wang, J., & Yao, Y. (2019). An entropy-based failure prediction model for the creep and fatigue of
metallic materials. Entropy, 21(11), 1104.
References
201
Classe. Abt. II, LXXVI 1877, pp 373–435.
Sosnovskiy, L. A. (1987). Statistical mechanics of fatigue damage (p. 288). Minsk, Belarus: Nauka
i Tekhnika. (In Russian).
Sosnovskiy, L. A. (1999). Tribo-fatigue: The dialectics of life (2nd ed., p. 116). Gomel, Belarus:
BelSUT Press. (In Russian).
Sosnovskiy, L. A. (2004). L-risk (mechanothermodynamics of irreversible damages) (p. 317).
Gomel, Belarus: BelSUT Press. (In Russian).
Sosnovskiy, L. A. (2005). Tribo-fatigue: Wear-fatigue damage and its prediction (foundations of
engineering mechanics) (p. 424). Berlin/Heidelberg, Germany: Springer.
Sosnovskiy, L. A. (2007). Mechanics of wear-fatigue damage (p. 434). Gomel, Belarus: BelSUT
Press.
Sosnovskiy, L. A. (2009). Life field and golden proportions. Nauka i Innovatsii, 79, 26–33. (In
Russian).
Sosnovskiy, L. A., & Sherbakov, S. S. (2012). Mechanothermodynamical system and its behavior.
Continuum Mechanics and Thermodynamics, 24, 239–256.
Sosnovskiy, L. A., & Sherbakov, S. S. (2015). Mechanothermodynamics. Springer.
Sosnovskiy, L. A., & Sherbakov, S. S. (2016). Mechanothermodynamic entropy and analysis of
damage state of complex systems. Entropy, 18(7), 268.
Sosnovskiy, L. A., & Sherbakov, S. S. (2017). A model of mechanothermodynamic entropy in
tribology. Entropy, 19, 115.
Sosnovskiy, L. A., & Sherbakov, S. S. (2019). On the development of mechanothermodynamics as
a new branch of physics. Entropy, 21(12), 1188.
Suhir, E. (2019). Failure Oriented Accelerated Testing (FOAT) Boltzmann Arrnhenius Zhurkov
Equation (BAZ) and theor application in aerospace microelectronics and photonics reliability
engineering. International Journal of Aeronautical Science and Aerospace Research, 6(3),
185–191.
Swalin, R. A. (1972). Thermodynamic of solids. New York, NY: John Wiley & Sons.
Swendsen, R. H. (2006). Statistical mechanics of colloids and Boltzmann’s definition of the
entropy. American Journal of Physics, 74, 187–190.
Tang, H., & Basaran, C. (2003). A damage mechanics based fatigue life prediction model. Transactions of ASME, Journal of Electronic Packaging, 125(1), 120–125.
Temfack, T., & Basaran, C. (2015). Experimental verification of a thermodynamic fatigue life
prediction model. Materials Science and Technology, 31(13), 2015.
Turing, A. M. (1952). The chemical basis of morphogenesis (PDF). Philosophical Transactions of
the Royal Society of London B, 237(641), 37–72. https://doi.org/10.1098/rstb.1952.0012.
Bibcode: 1952RSPTB.237...37T. JSTOR 92463.
Valanis, K. C. (1971). International Journal of Non-Linear Mechanics, 6(3), 337–360.
Valanis, K. C., & Komkov, V. (1980). Irreversible thermodynamics from the point of view of
internal variable theory/A Lagrangian formulation, – Archiwum Mechaniki Stosowanej, rcin.
org.pl.
Van Kampen, N. G. (1984). The Gibbs paradox. In W. E. Parry (Ed.), Essays in theoretical physics
in honour of Dirk ter Haar (pp. 303–312). Oxford, UK: Pergamon.
Wassim M Haddad, (2019). A dynamical systems theory of thermodynamics, Princeton University
press.
Wassim M Haddad, Qing Hui, Sergey G Nersesov, Vijaysekhar Chellaboina, (2005). Thermodynamic modeling, energy equipartition, and nonconservation of entropy for discrete-time dynamical systems, J. of Advances in Difference Equations, Volume 2005, Issue 3, Pp. 248040,
Springer International Publishing.
Wang, J., & Yao, Y. (2017). An entropy based low-cycle fatigue life prediction model for solder
materials. Entropy, 19(10), 503.
Wang, J., & Yao, Y. (2019). An entropy-based failure prediction model for the creep and fatigue of
metallic materials. Entropy, 21(11), 1104.
References
201
