Title :
Multiphysics Modeling and Characterization of MicroCVD Chip for Growing Carbon Nanomaterials
Author :
Long Zheng ; Yangbing Wu ; Dan Zhang ; Liwei Lin ; Donghui Guo
Author_Institution :
Dept. of Electron. Eng., Xiamen Univ., Xiamen, China
fDate :
June 30 2014-July 2 2014
Abstract :
A multiphysics model of Micro-CVD chip for growing carbon nanotubes is presented in this paper. The proposed model covers structural, thermal and electric analyses and takes consideration of all modes of heat dissipation include heat convection, conduction and radiation. The temperature dependence of thermo physical properties and heat transfer properties are also taken into account. The method is proved to be general and can be used for the simulation and analysis of different type of electro-thermal Micro-CVD chip at different physical size over a wide range of operating temperature. Thus the thermal design of Micro-CVD chip for uniform temperature control, which is critical in synthesize carbon nanotubes, becomes possible. An improved distribution of micro-tubes on hot stage of Micro-CVD chip is designed and simulated. The temperature reaches 1300K and the variation on the whole reactive region of the hot stage is within ± 7K.
Keywords :
carbon nanotubes; chemical vapour deposition; convection; cooling; heat conduction; heat radiation; micromechanical devices; semiconductor growth; thermal analysis; carbon nanomaterial growth; carbon nanotubes; electric analyses; electro-thermal microCVD chip; heat conduction; heat convection; heat dissipation; heat radiation; heat transfer properties; microCVD chip characterization; microtube distribution; multiphysics modeling; structural analyses; temperature dependence; thermal analyses; thermal design; thermophysical properties; uniform temperature control; Carbon nanotubes; Heat transfer; Resistance heating; Silicon; Temperature dependence; Temperature distribution; ANSYS; Micro-CVD; carbon nanotubes; simulation; thermal design;
Conference_Titel :
Software Security and Reliability-Companion (SERE-C), 2014 IEEE Eighth International Conference on
Conference_Location :
San Francisco, CA
DOI :
10.1109/SERE-C.2014.48