 | | Mechanics of Solids A Journal of Russian Academy of Sciences | | Founded
in January 1966
Issued 6 times a year
Print ISSN 0025-6544 Online ISSN 1934-7936 |
Archive of Issues
Total articles in the database: | | 13088 |
In Russian (Èçâ. ÐÀÍ. ÌÒÒ): | | 8125
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In English (Mech. Solids): | | 4963 |
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<< Previous article | Volume 60, Issue 1 / 2025 | Next article >> |
S. Kumar, H. Nagar, and S. Kumari, "Reflection of Plane Wave at the Interface Between Thermoelastic and Hygro Thermoelastic Solid Half Space," Mech. Solids. 60 (1), 384-402 (2025) |
Year |
2025 |
Volume |
60 |
Number |
1 |
Pages |
384-402 |
DOI |
10.1134/S0025654424605421 |
Title |
Reflection of Plane Wave at the Interface Between Thermoelastic and Hygro Thermoelastic Solid Half Space |
Author(s) |
S. Kumar (Chandigarh University, Gharuan, Mohali, Punjab, 140413 India, sumitkochar76@gmail.com)
H. Nagar (Chandigarh University, Gharuan, Mohali, Punjab, 140413 India, drharishnagar@gmail.com)
S. Kumari (Chandigarh University, Gharuan, Mohali, Punjab, 140413 India, sangwan.sangeeta.ss@gmail.com) |
Abstract |
The main aim of this research article is to calculate the reflection of plane waves at the Interface between the homogeneous transversely solid half space (medium-II) and the linear anisotropic
hygrothermoelastic solid half space (medium-I). The governing equations for both the medium are
solved and satisfies the required boundary conditions which shows the existence of four waves namely
qP, qT, qM, qSV for the hygrothermal solid half space. Also show the existence of three waves P, ST
and SV for the transversely homogeneous isotropic generalized thermoelasticity. Expression of
Reflection coefficients with respect to the frequency are calculated. The physical properties of a particular material are considered for numerical simulation. Phase velocity, specific loss, Attenuation
coefficient and Refection Coefficient are plotted graphical. |
Keywords |
Thermoelasticity, transversely isotropic, hygrothermal, plane waves, reflection coefficients, refraction coefficient |
Received |
18 September 2024 | Revised |
17 January 2025 | Accepted |
18 January 2025 |
Link to Fulltext |
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