Effect of external electric field on the characters of Rayleigh wave propagation in a piezoelectric half-space

Author(s):  
Chun-long Gu ◽  
Feng Jin
2021 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Shishir Gupta ◽  
Rishi Dwivedi ◽  
Smita Smita ◽  
Rachaita Dutta

Purpose The purpose of study to this article is to analyze the Rayleigh wave propagation in an isotropic dry sandy thermoelastic half-space. Various wave characteristics, i.e wave velocity, penetration depth and temperature have been derived and represented graphically. The generalized secular equation and classical dispersion equation of Rayleigh wave is obtained in a compact form. Design/methodology/approach The present article deals with the propagation of Rayleigh surface wave in a homogeneous, dry sandy thermoelastic half-space. The dispersion equation for the proposed model is derived in closed form and computed analytically. The velocity of Rayleigh surface wave is discussed through graphs. Phase velocity and penetration depth of generated quasi P, quasi SH wave, and thermal mode wave is computed mathematically and analyzed graphically. To illustrate the analytical developments, some particular cases are deliberated, which agrees with the classical equation of Rayleigh waves. Findings The dispersion equation of Rayleigh waves in the presence of thermal conductivity for a dry sandy thermoelastic medium has been derived. The dry sandiness parameter plays an effective role in thermoelastic media, especially with respect to the reference temperature for η = 0.6,0.8,1. The significant difference in η changes a lot in thermal parameters that are obvious from graphs. The penetration depth and phase velocity for generated quasi-wave is deduced due to the propagation of Rayleigh wave. The generalized secular equation and classical dispersion equation of Rayleigh wave is obtained in a compact form. Originality/value Rayleigh surface wave propagation in dry sandy thermoelastic medium has not been attempted so far. In the present investigation, the propagation of Rayleigh waves in dry sandy thermoelastic half-space has been considered. This study will find its applications in the design of surface acoustic wave devices, earthquake engineering structural mechanics and damages in the characterization of materials.


2005 ◽  
Vol 113 (3) ◽  
pp. 269-274 ◽  
Author(s):  
Lenka Sebestikova ◽  
Elena Slamova ◽  
Hana Sevcikova

High Voltage ◽  
2016 ◽  
Vol 1 (2) ◽  
pp. 90-94 ◽  
Author(s):  
Yang Xia ◽  
Dongping Liu ◽  
Hamidreza Ghomi ◽  
Wenchun Wang ◽  
Zhenhua Bi ◽  
...  

Ultrasonics ◽  
2020 ◽  
Vol 103 ◽  
pp. 106105 ◽  
Author(s):  
Wenjun Yang ◽  
Xu Liang ◽  
Qian Deng ◽  
Shengping Shen

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