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Elastodynamical disturbances due to laser irradiation in a microstretch thermoelastic medium with microtemperatures

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This research is concerned with the study of mechanical disturbances due to presence of ultra-short laser pulse as input heat source in a microstretch thermoelastic medium with microtemperatures. The medium is subjected to normal and tangential forces. The solution of the problems is developed in terms of normal modes. Mathematical expressions have been obtained for normal stress, tangential stress, microstress and temperature change. The numerically computed results are shown graphically. A mathematical model has been developed and various stress quantities have been analyzed. Some particular cases are also derived from the present investigation.
Rocznik
Strony
103--112
Opis fizyczny
Bibliogr. 24 poz., wykr.
Twórcy
autor
  • Department of Education, Haryana, India
  • Guru Nanak Dev Engineering College, Ludhiana, (Punjab), India
Bibliografia
  • [1] Eringen A.C.: Theory of thermomicrostretch elastic solids. International Journal of Engineering Science. 28 (12), 1990, 1291-1301.
  • [2] Marin M.: Harmonic vibrations in thermoelasticity of microstretch materials. Journal of vibrations and acoustics. 132(4), 2010, 1-6.
  • [3] Marin M.: On weak solutions in elasticity of dipolar bodies with voids. Journal of Computational and Applied Mathematics. 82 (1-2), 1997, 291-297.
  • [4] Rose L.R.F.: Point-source representation for laser-generated ultrasound. Journal of the Acoustical Society of America. 75, 3, 1984, 723.
  • [5] Scruby C.B., Drain L.E.: Laser Ultrasonic Techniques and Applications. Adam Hilger, Bristol, UK, 1990.
  • [6] Spicer J.B., Mckie A.D.W., Wagner J.W.: Quantitative Theory for Laser Ultrasonic Waves in a Thin Plate, Applied Physics Letters. 57, 1990, 1882-1884.
  • [7] McDonald F.A.: On the Precursor in Laser-Generated Ultrasound Waveforms in Metals. Applied Physics Letters. 56, 3, 1990, 230- 232.
  • [8] Al-Huniti N.S., Al-Nimr M.A.: Thermoelastic behavior of a composite slab under a rapid dual-phase-lag heating. Journal of Thermal Stresses. 27, 2004, 607-623.
  • [9] Ezzat M.A., Karamany A. and Fayik M.A.: Fractional ultrafast laserinduced thermo-elastic behavior in metal films. Journal of Thermal Stresses. 35, 2012, 637-651.
  • [10] Youssef H.M., El-Bary A.A.: Thermoelastic material response due to laser pulse heating in context of four theorems of thermoelasticity. Journal of thermal stresses. 37, 2014, 1379-89.
  • [11] Elhagary M.A.: A two-dimensional generalized thermoelastic diffusion problem for a thick plate subjected to thermal loading due to laser pulse. Journal of thermal stresses. 37, 2014, 1416- 1432.
  • [12] Kumar R., Kumar A., Singh D.: Thermomechanical interactions of Laser Pulse with Microstretch Thermoelastic Medium. Archives of Mechanics. 67, 6, 2015, 439-456.
  • [13] Grot R.A.: Thermodynamics of a continuum with microstructure. International Journal of Engineering Sciences. 7, 1969, 801-814.
  • [14] Riha P.: On the Micro continuum model of heat conduction in materials with inner structure. International Journal of Engineering Sciences. 14, 1976, 529-535.
  • [15] Iesan D., Quintanilla R.: On thermoelastic bodieswith inner structure and microtemperatures. Journal of Mathematical Analysis and Applications. 354, 2009, 12-23.
  • [16] Iesan D., Quintanilla R.: On a theory of thermoelasticity with microtemperatures. Journal of Thermal Stresses. 23, 2000, 199- 215.
  • [17] Iesan D: On a theory of micromorphic elastic solids with microtemperatures. Journal of Thermal Stresses. 24, 2001, 737- 752.
  • [18] Chirita S., Ciarletta M., D’Apice C.: On the theory of thermoelasticity with microtemperatures, Journal of Mathematical Analysis and Applications, 397, 2013, 349-361.
  • [19] Iesan D: Thermoelasticity of bodies with microstructure and microtemperatures, International Journal of Solids and Structures. 43, 2006 3414-3427.
  • [20] Al-Qahtani M.H., Datta S.K.: Laser-generated thermoelastic waves in an anisotropic infinite plate: Exact analysis, Journal of Thermal Stresses, 31, 2008, 569-583.
  • [21] Eringen A.C.: Microcontinuum field theories I: Foundations and Solids, Springer-Verleg, New York. 1999.
  • [22] Eringen A.C.: Plane waves in nonlocal micropolar elasticity, International Journal of Engineering Sciences, 22, 1984, 1113-1121.
  • [23] Dhaliwal R.S., Singh A.: Dynamic Coupled Thermoelasticity, Hindustan Publication Corporation, New Delhi, 1980.
  • [24] Kumar R., Kaur M.: Reflection and refraction of plane waves at the interface of an elastic solid and a microstretch thermoelastic solid with microtemperatures. Archives of Applied Mechanics. 84, 2014, 571-590.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fc278953-1fb2-40b6-8183-0c4c96dd3840
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