TY - GEN
T1 - Thermal shock problem of piezoelectric materials with temperature-dependent properties
AU - Sun, Ting
AU - Tian, Xiao Geng
AU - Chen, Li
AU - Shen, Ya Peng
PY - 2008
Y1 - 2008
N2 - Base on the generalized thermoelastic theories of Lord and Shulman (L-S) and Green and Lindsay (G-L), the thermal shock problem of an infinite piezoelectric plate with temperature-dependent properties are studied by using the finite element method (FEM). The governing equations are nonlinear of temperature due to temperature-dependent properties. It is difficult to solve the problem by using the integral transform method. The FEM equations are solved directly in time domain. The distributions of temperature, displacement, stress and electric field are obtained. In the results, it is easy to find that the properties have jumps at the heat wave under the L-S and G-L theories but change continuously under the classical theory. The temperature-dependent properties make the other parameters different from temperatureindependent condition. From the results obtained in the paper, one can get that the time-domain solution method of FEM can describe the finite velocity of heat conduction accurately.
AB - Base on the generalized thermoelastic theories of Lord and Shulman (L-S) and Green and Lindsay (G-L), the thermal shock problem of an infinite piezoelectric plate with temperature-dependent properties are studied by using the finite element method (FEM). The governing equations are nonlinear of temperature due to temperature-dependent properties. It is difficult to solve the problem by using the integral transform method. The FEM equations are solved directly in time domain. The distributions of temperature, displacement, stress and electric field are obtained. In the results, it is easy to find that the properties have jumps at the heat wave under the L-S and G-L theories but change continuously under the classical theory. The temperature-dependent properties make the other parameters different from temperatureindependent condition. From the results obtained in the paper, one can get that the time-domain solution method of FEM can describe the finite velocity of heat conduction accurately.
KW - Finite element method
KW - Generalized piezothermoelasticity theory
KW - Relaxation time
UR - https://www.scopus.com/pages/publications/67649654020
U2 - 10.1109/SPAWDA.2008.4775740
DO - 10.1109/SPAWDA.2008.4775740
M3 - 会议稿件
AN - SCOPUS:67649654020
SN - 9781424428915
T3 - 2008 Symposium on Piezoelectricity, Acoustic Waves, and Device Applications, SPAWDA 2008
SP - 11
EP - 16
BT - 2008 Symposium on Piezoelectricity, Acoustic Waves, and Device Applications, SPAWDA 2008
T2 - 2008 Symposium on Piezoelectricity, Acoustic Waves, and Device Applications, SPAWDA 2008
Y2 - 5 December 2008 through 8 December 2008
ER -