Title :
Investigation of imperfect interface on behaviors of piezoelectric laminates under transient thermal shock
Author :
Shuan-hu Shi ; Feng Jin
Author_Institution :
State Key Lab. for Strength & Vibration of Mech. Struct., Xi´an Jiaotong Univ., Xi´an, China
fDate :
Oct. 30 2014-Nov. 2 2014
Abstract :
Based on the generalized piezoelectric-thermoelastic theory, the performance of imperfect interface on the dynamic response of an infinite extent piezoelectric plate excited by thermal shock is presented. As a simple case, we first investigate the behaviors of a single-layered plate which is traction free and applied thermal shock. After that a double-layered plate with imperfect interface is studied, and the same boundary conditions are adopted on its external surfaces as used on the single-layered plate. The Laplace transform and the Riemann-sum approximation method are utilized to solve the coupled piezoelectric-thermo-elastic governing equations of the dynamic problems. The semi-analytical solutions are obtained. Results obtained reveal that the imperfect interface leads to the reduced speed of thermo-elastic wave, the weak attenuation of temperature and the enlarged amplitude of displacement. Furthermore, a temperature drop at the front of the thermal wave is also newly found.
Keywords :
Laplace transforms; elastic waves; laminates; piezoelectricity; plates (structures); thermal shock; thermoelasticity; Laplace transform; Riemann-sum approximation method; boundary conditions; coupled piezoelectric-thermoelastic equations; displacement amplitude; double-layered plate; dynamic response; external surfaces; generalized piezoelectric-thermoelastic theory; imperfect interface performance; infinite extent piezoelectric plate; piezoelectric laminate behaviors; semianalytical solutions; single-layered plate behaviors; temperature drop; thermal wave front; thermoelastic wave speed; transient thermal shock; weak temperature attenuation; Acoustic waves; Boundary conditions; Electric shock; Equations; Piezoelectricity; Temperature distribution; Temperature sensors; Generalized piezoelectric-thermoelasticity; Imperfect interface; Layered structure; Thermal shock;
Conference_Titel :
Piezoelectricity, Acoustic Waves, and Device Applications (SPAWDA), 2014 Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-6424-6
DOI :
10.1109/SPAWDA.2014.6998559