DocumentCode :
2481663
Title :
Thermoelectric properties of β-FeSi2 with dispersion of SiC by mechanical alloying
Author :
Nagai, Hiroshi ; Katsuyama, Shgeru ; Ito, Mikio ; Majima, Kazuhiko
Author_Institution :
Dept. of Mater. Sci. & Process., Osaka Univ., Japan
fYear :
1998
fDate :
24-28 May 1998
Firstpage :
374
Lastpage :
377
Abstract :
The thermoelectric properties of the hot-pressed n-type Fe0.98Co0.02Si2 and p-type Fe0.92 Mn0.08Si2 mechanically alloyed with Si and carbon powders have been investigated. It has been found that MA even after a short period is very effective to form the β-FeSi2 phase from the mixture of the α-Fe2Si5 and ε-FeSi phases during hot-pressing for 1 h. Both of the hot-pressed n-type and p-type samples are composed of mostly the β-phase with dispersion of a small amount of ε-phase particles. The amount of the ε-phase decreases with increasing amount of (Si+C) addition. A lot of fine α-SiC particles around 20 nm form in the samples mechanical alloyed for 20 h and hot-pressed at 1173 K for 1 h. The addition of (Si+C) markedly increases the thermoelectric power of both n-type and p-type FeSi2 due to the decrease in the amount of metallic ε-phase and the thermoelectric power values are at a maximum at 3-4 mass% (Si+C) for both cases. The electrical resistivity increases with increasing amount of (Si+C) addition for both n-type and p-type FeSi2 probably due to the decrease in the amount of metallic ε-phase with low resistivity and the increase in the amount of α-SiC with high electrical resistivity as well as grain refinement. The addition of (Si+C) markedly decreases the thermal conductivity of both n-type and p-type FeSi2 due to the dispersion of fine α-SiC particles, which results in the marked increase in the figure of merit. The figure of merit values are at a maximum at 3-4 mass% (Si+C) for both n-type and p-type FeSi2
Keywords :
composite materials; electrical resistivity; grain refinement; hot pressing; iron compounds; powder technology; silicon compounds; thermal conductivity; thermoelectric power; ≫epsilon/-phase; β-FeSi2 phase; Fe0.92Mn0.08Si2; Fe0.98Co0.02Si2; FeSi2-SiC; electrical resistivity; figure of merit; fine α-SiC particles; grain refinement; hot-pressed samples; mechanical alloying; n-type samples; p-type samples; thermal conductivity; thermoelectric power; thermoelectric properties; Alloying; Conducting materials; Electric resistance; Iron; Mechanical factors; Powders; Semiconductor materials; Silicon carbide; Thermal conductivity; Thermoelectricity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermoelectrics, 1998. Proceedings ICT 98. XVII International Conference on
Conference_Location :
Nagoya
ISSN :
1094-2734
Print_ISBN :
0-7803-4907-5
Type :
conf
DOI :
10.1109/ICT.1998.740397
Filename :
740397
Link To Document :
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