과제정보
Authors are thankful to the reviewers for their valuable suggestions which helped the author's improve the quality of manuscript. There is no funding.
참고문헌
- Abbas, I.A. (2011), "A two-dimensional problem for a fibre-reinforced anisotropic thermoelastic half-space with energy dissipation", Sadhana, 36(3), 411-423. https://doi.org/10.1007/s12046-011-0025-5.
- Abbas, I.A. (2014a), "Analytical solution for a free vibration of a thermoelastic hollow sphere", Mech. Bas. Des. Struct. Mach., 43(3), 265-276. https://doi.org/10.1080/15397734.2014.956244.
- Abbas, I.A. (2014b), "Fractional order GN model on thermoelastic interaction in an infinite fibre- reinforced anisotropic plate containing a circular hole", J. Comput. Theor. Nanosci., 11(2), 380-384. https://doi.org/10.1166/jctn.2014.3363.
- Abbas, I.A. (2015), "Eigenvalue approach on fractional order theory of thermoelastic diffusion problem for an infinite elastic medium with a spherical cavity", Appl. Math. Model., 39(20), 6196-6206. https://doi.org/10.1016/j.apm.2015.01.065.
- Abo-Dahab, S. and Lotfy, Kh. (2015), "Generalized magneto-thermoelasticity with fractional derivative heat transfer for a rotation of a fibre-reinforced thermoelastic", J. Comput. Theor. Nanosci., 12(8), 1869-1881. https://doi.org/10.1166/jctn.2015.3972.
- Aboelregal, A.E., Ahmed, I.E., Nasr, M.E., Khalil, M., Zakria, A., and Mohammed, F.A. (2020), "Thermoelastic processes by a continuous heat source line in an infinite solid via Moore-Gibson-Thompson thermoelasticity", Mater. (Basel), 13(19), 4463. https://doi.org/10.3390/ma13194463.
- Abouelregal, A., Elagan S.K. and Alshehri, N. (2021), "Modified Moore-Gibson-Thompson photo thermoelastic model for a rotating semiconductor half-space subjected to a magnetic field", Int. J. Modern Phys., 32(12), 2150163. https://doi.org/10.1142/s0129183121501631.
- Abouelregal, A., Ersoy, H. and Civalek, O. (2021), "Solution of Moore-Gibson-Thompson equation of an unbounded medium with a cylindrical hole", Math., 9(13), 1536. https://doi.org/10.3390/math9131536.
- Almond, D.P. and Patel, P.M. (1996), Photothermal Science and Techniques, Chapman and Hall, London.
- Bazarra, N., Fernandez, J.R. and Quintanilla, R. (2020), "Analysis of a Moore-Gibson-Thompson thermoelastic problem", J. Comput. Appl. Math., 382, 113058. https://doi.org/10.1016/j.cam.2020.113058.
- Biot, M.A. (1956), "Thermoelasticity and irreversible thermodynamics", J. Appl Phys., 27(3), 240-253. https://doi.org/10.1063/1.1722351.
- Conti, M., Pata, V. and Quintanilla, R. (2020a), "Thermoelasticity of Moore-Gibson-Thompson type with history dependence in the temperature", Asymp. Anal., 120, 1-21. https://doi.org/10.3233/ASY-191576.
- Conti, M., Pata, V. and Quintanilla, R. (2020b), "On the analyticity of the MGT- viscoelastic plate with heat conduction", J. Diff. Equ., 269(10), 7862-7880. https://doi.org/10.1016/j.jde.2020.05.043.
- Dhaliwal, R.S. and Singh, A. (1983), "Dynamic coupled thermoelasticity", SIAM Rev., 25(1), 126-127. https://doi.org/10.1137/1025029
- Green, A.E. and Naghdi, P.M. (1991), "A re-examination of the basic postulates of thermomechanics", Proc. Roy. Soc. London A, 432, 171-194. https://doi.org/10.1098/rspa.1991.0012.
- Green, A.E. and Naghdi, P.M. (1992), "On undamped heat waves in an elastic solid", J. Therm. Stress., 15, 253-264. https://doi.org/10.1080/01495739208946136.
- Green, A.E. and Naghdi, P.M. (1993), "Thermoelasticity without energy dissipation", J. Elast., .31, 189-208. https://doi.org/10.1007/BF00044969.
- Hobiny, A. and Abbas, I.A. (2018), "Theoretical analysis of thermal damages in skin tissue induced by intense moving heat source", Int. J. Heat Mass Transf., 124, 1011-1014. https://doi.org/10.1016/j.ijheatmasstransfer.2018.04.018.
- Hobiny, A., Alzahrani, S. and Abbas, A. (2021), "A study on photo-thermo-elastic wave in a semi-conductor material caused by ramp-type heating", Alex. Eng. J., 60(2), 2033-2040. https://doi.org/10.1016/j.aej.2020.12.002.
- Jahangir, A., Tanvir, F. and Zenkour, A.M. (2020), "Reflection of photothermoelastic waves in a semiconductor material with different relaxations", Ind. J. Phys., 95, 51-59. https://doi.org/10.1007/s12648-020-01690-x.
- Jangid, K., Gupta, M. and Mukhopadhyay, S. (2021), "On propagation of harmonic plane waves under the Moore-Gibson-Thompson thermoelasticity theory", Wave. Random Complex Media, 1-24. https://doi.org/10.1080/17455030.2021.1949071.
- Khamis, A.K., El-Bary, A.A., Lotfy, Kh. and Bakali, A. (2020), "Photothermal excitation processes with refined multi dual phase-lags theory for semiconductor elastic medium", Alex. Eng. J., 59(1), 1-9. https://doi.org/10.1016/j.aej.2019.11.016.
- Kumar, H. and Mukhopadhyay, S. (2020), "Thermoelastic damping analysis in microbeam resonators based on Moore-Gibson-Thompson generalized thermoelasticity theory", Acta Mech., 231, 3003-3015. https://doi.org/10.1007/s00707-020-02688-6.
- Kumar, R., Sharma, N. and Chopra, S. (2022), "Modelling of thermomechanical response in anisotropic photothermoelastic plate", Int. J. Mech. Eng., 7(6), 577-594.
- Lord, H.W. and Shulman, Y. (1967), "A generalized dynamical theory of thermoelasticity", J. Mech. Phys. Solid., 15(5), 299-309. https://doi.org/10.1016/0022-5096(67)90024-5.
- Lotfy, Kh. (2019), "Effect of variable thermal conductivity during the photothermal diffusion process of semiconductor medium", Silicon, 11(4), 1863-1873. https://doi.org/10.1007/s12633-018-0005-z.
- Lotfy, Kh. and Othman, M. (2011), "Effect of rotation on plane waves in generalized thermo-microstretch elastic solid with one relaxation time", Multidisc. Model. Mater. Struct., 7(1), 43- 62. https://doi.org/10.1108/15736101111141430.
- Lotfy, Kh., Hassan, W., El-Bary, A.A. and Kadry, M.A. (2020), "Response of electromagnetic and Thomson effect of semiconductor medium due to laser pulses and thermal memories during photothermal excitation", Result. Phys., 16, 102877. https://doi.org/10.1016/j.rinp.2019.102877.
- Mahdy, A.M.S., Lotfy, Kh., Ahmed, M.H., El-Bary, A.A. and Ismail, E.A. (2020), "Electromagnetic hall current effect and fractional heat order for microtemperature photo-excited semiconductor medium with laser pulses", Result. Phys., 17, 103161. https://doi.org/10.1016/j.rinp.2020.103161.
- Mandelis, A. (1987), Photoacoustic and Thermal wave Phenomena in Semiconductors, Elsevier Science, North-Holland, New York.
- Mandelis, A. and Michaelian, K.H. (1997), "Photoacoustic and photothermal science and engineering" Opt. Eng., 36(2), 301-302. https://doi.org/10.1117/1.601597.
- Marin, M., Ochsner, A. and Bhatti, M.M. (2020), "Some results in Moore-Gibson-Thompson thermoelasticity of dipolar bodies", ZAMM-J. Appl. Math. Mech., 100(2), e202000090. https://doi.org/10.1002/zamm.202000090.
- Marin, M., Othman, M. and Abbas, I.A. (2015), "An extension of the domain of influence theorem for generalized thermoelasticity of anisotropic material with voids", J. Comput. Theor. Nanosci., 12(8), 1594-1598. https://doi.org/10.1166/jctn.2015.3934.
- Mohamed, M.S., Lotfy, Kh., El-Bary, A. and Mahdy, A.M.S. (2022), "Photo-thermal-elastic waves of excitation microstretch semiconductor medium under the impact of rotation and initial stress", Opt. Quant. Electron., 54(4), 1-21. https://doi.org/10.1007/s11082-022-03533-x.
- Nikolic, P.M. and Todorovic, D.M. (1989), "Photoacoustic and electroacoustic properties of semiconductors", Prog. Quant. Electron., 13, 107-189. https://doi.org/10.1016/0079-6727(89)90006-2
- Othman, M., Lotfy, Kh. and Farouk, R. (2009), "Transient disturbance in a half-space under generalized magneto-thermoelasticity with internal heat source", Acta Physica Polonica A, 116(2), 185-192. https://doi.org/10.12693/APhysPolA.116.185
- Quintanilla, R. (2019), "Moore-Gibson-Thompson thermoelasticity", Math. Mech. Solid., 24(12), 4020-4031. https://doi.org/10.1177/ 1081286519862007.
- Quintanilla, R. (2020), "Moore-Gibson-Thompson thermoelasticity with two temperatures", Appl. Eng. Sci., 1, 100006. https://doi.org/10.1016/j.apples.2020.100006.
- Roychoudhari, S.K. (2007), "On a thermoelastic three-phase-lag model", J. Therm. Stress., 30, 231-238. https://doi.org/10.1080/01495730601130919.
- Saeed, A.M., Lotfy, Kh., El-Bary, A. and Ahmed, M.H. (2022), "Functionally graded (FG) magneto-photo-thermoelastic semiconductor material with hyperbolic two-temperature theory", J. Appl. Phys., 131(4), 045101. https://doi.org/10.1063/5.0072237.
- Sharma, K. (2010), "Boundary value problems in generalised thermodiffusive elastic medium", J. Solid. Mech., 2(4), 348-362.
- Sharma, N. and Kumar, R. (2021), "Photo-thermoelastic investigation of semiconductor material due to distributed loads", J. Solid Mech., 13(2), 202-212. https://doi.org/10.22034/JSM.2020.1907462.1639.
- Sharma, N. and Kumar, R. (2022), "Photothermoelastic deformation in dual phase lag model due to concentrated inclined load", Itali. J. Pure Appl. Math..
- Sharma, S., Sharma, K. and Bhargava, R.R. (2013), "Propagation of waves in micropolar thermoelastic solid with two temperatures bounded with layers or half-space of inviscid liquid", Mater. Phys. Mech., 16, 66-81.
- Singh, B. and Mukhopadhyay, S. (2021), "Galerkin-type solution for the Moore-Gibson-Thompson thermoelasticity theory", Acta Mechanica, 232, 1273-1283. https://doi.org/10.1007/s00707-020-02915-0.
- Thompson, P.A. (1972), Compressible-Fluid Dynamics, New York: McGraw-Hill.
- Tzou, D.Y. (1995), "A unified approach for heat conduction from macro-to-micro-scales", J. Heat Transf., 117(1), 8-16. https://doi.org/10.1115/1.2822329.
- Zakaria, K., Sirwah, M.A. and Abouelregal, A.E. (2021), "Photo-thermoelastic model with time- fractional of higher order and phase lags for a semiconductor rotating materials", Silicon, 13, 573-585. https://doi.org/10.1007/s12633-020-00451-z.
- Zenkour, A.M. (2020), "Exact coupled solution for photothermal semiconducting beams using a refined multi-phase-lag theory", Opt. Laser Technol., 128, 106233. https://doi.org/10.1016/j.optlastec.2020.106233.