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Thermal rectification of asymmetrically-defective materials
Hiroyuki Hayashi, Yohei Ito and Koji Takahashi*
The Journal of Mechanical Science and Technology, vol. 25, no. 1, pp.27-32, 2011
Abstract : We conducted numerical simulations of heat conduction in one-dimensional (1D) nonlinear lattices to reveal the mechanism of thermal
rectification of asymmetrically-defective materials. A decreased spring constant simulates the defective lattice and the obtained temperature
profile suggests a thermal resistance existing at the interface of two linked segments with different spring constants. Our numerical
results suggest that the thermal rectification of two-segment system is dependent on the spring constant and temperature gradient. Introducing
the estimated phonon band, most of the rectification mechanisms are clearly explained and performance limit as a thermal rectifier
is found for the defective/pristine materials.
Keyword : Anharmonic lattice model; Low dimensional material; Molecular dynamic simulation; Carbon nanotube; Thermal rectification |
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