EIGENVALUE APPROACH TO NANOBEAM IN MODIFIED COUPLE STRESS THERMOELASTIC WITH THREE-PHASE-LAG MODEL INDUCED BY RAMP TYPE HEATING
Creators
- 1. Kurukshetra University, Department of Mathematics, Kurukshetra, India
- 2. Himachal Pradesh University, Department of Mathematics and Statistics, Shimla, India
Description
This article deals with the study of a thermoelastic nanobeam in a modified couple stress theory subjected to ramp-type heating. The mathematical model is prepared for the nanobeam in thermoelastic three-phase-lag. The Laplace transform and the eigenvalue approach are used to find the displacement component, lateral deflection, temperature change and axial stress of the thermoelastic beam. The general algorithm of the inverse Laplace transform is developed to compute results numerically. The comparison of three-phase-lag, dual-phaselag and GN-III (1993) models are represented, and their illustration is depicted graphically. This study finds the applications in engineering, medical science, sensors, etc.
Files
10.15632_jtam-pl.55.3.1067.pdf
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