Author:
Selvamani Rajendran,Ponnusamy Palaniyandi
Abstract
Purpose
– The purpose of this paper is to study the wave propagation in a generalized piezothermoelastic rotating bar of circular cross-section using three-dimensional linear theory of elasticity.
Design/methodology/approach
– A mathematical model is developed to study the wave propagation in a generalized piezothermelastic rotating bar of circular cross-section by using Lord-Shulman (LS) and Green-Lindsay (GL) theory of thermoelasticity. After developing the formal solution of the mathematical model consisting of partial differential equations, the frequency equations have been derived by using the thermally insulated/isothermal and electrically shorted/charge free boundary conditions prevailing at the surface of the circular cross-sectional bar. The roots of the frequency equation are obtained by using the secant method, applicable for complex roots.
Findings
– In order to include the time requirement for the acceleration of the heat flow and the coupling between the temperature and strain fields, the analytical terms have been derived for the non-classical thermo-elastic theories, LS and GL theory. The computed physical quantities such as thermo-mechanical coupling, electro-mechanical coupling, frequency shift, specific loss and frequency have been presented in the form of dispersion curves. From the graphical patterns of the structure, the effect of thermal relaxation times and the rotational speed as well as the anisotropy of the of the material on the various considered wave characteristics is more significant and dominant in the flexural modes of vibration. The effect of such physical quantities provides the foundation for the construction of temperature sensors, acoustic sensor and rotating gyroscope.
Originality/value
– In this paper, the influence of thermal relaxation times and rotational speed on the wave number with thermo-mechanical coupling, electro-mechanical coupling, frequency shift, specific loss and frequency has been observed and are presented as dispersion curves. The effect of thermal relaxation time and rotational speed on wave number for the case of generalized piezothermoelastic material of circular cross-section was never reported in the literature. These results are new and original.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science,Modeling and Simulation
Reference43 articles.
1. Abd-Alla, A.M.
and
Bayones, F.S.
(2011), “Effect of rotation in a generalized magneto thermo viscoelastic media”,
Advances in Theoretical and Applied Mechanics
, Vol. 4 No. 2, pp. 15-42.
2. Bayat, M.
,
Rahimi, M.
,
Saleem, M.
,
Mohazzab, A.H.M.
,
Wudtke, I.
and
Talebi, H.
(2014), “One-dimensional analysis for magneto-thermo-mechanical response in a functionally graded annular variable-thickness rotating disk”,
Applied Mathematical Modelling
, Vol. 38 No. 9, pp. 4625-4639.
3. Bhimraddi, A.A.
(1984), “A higher order theory for free vibration analysis of circular cylindrical shell”,
International Journal of Solid and Structure
, Vol. 20, pp. 623-630.
4. Chandrasekharaiah, D.S.
(1984), “A temperature rate dependent theory of piezoelectricity”,
Journal of Thermal Stresses
, Vol. 7, pp. 293-306.
5. Chandrasekharaiah, D.S.
(1986), “Thermoelasticity with second sound – a review”,
Applied Mechanical Reviews
, Vol. 39, pp. 355-376.
Cited by
8 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献