有限要素シミュレーションを用いたMg2Si/Ni 傾斜積層複合材料の熱電特性および性能の解析

Autor: 伊藤 孝至
Zdroj: Journal of the Japan Society of Powder & Powder Metallurgy / Funtai Oyobi Fummatsu Yakin; sep2017, Vol. 64 Issue 9, p501-509, 9p
Abstrakt: Magnesium silicide (Mg2Si) is an n-type promising material for thermoelectric (TE) power generation using waste heat with temperature range of 300 to 600°C. Fabricating the multilayer composite of Mg2Si and metallic material is a useful method for overcoming the weak point in the mechanical property of the material and for making the anisotropic TE material. The transverse TE force is occurred by giving vertical temperature difference in the tilted anisotropic TE material (transverse TE effect). In this study, the Mg2Si/Ni multilayer composite was focused on for transforming the isotropic Mg2Si to the anisotropic TE material. The TE properties of the Mg2Si/Ni tilted multilayer composite were estimated using a finite element simulation. The influences of structural conditions (thickness ratio of Mg2Si layer and tilt angle) of the tilted multilayer composite on the TE properties were investigated. The TE properties could be related quantitatively with the structural conditions. The structural conditions existed in which the tilted multilayer composite had the power factor greater than Mg2Si. The optimum structural conditions giving the maximum TE performance were found out. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index