• DocumentCode
    2013095
  • Title

    Application of Thermoelectric Modules Fabricated with (Bi,Sb)2(Te,Se)3 using Rapid Solidification Technique for the Projector System

  • Author

    Horio, Yuma ; Hayashi, Takahiro ; Kamimura, Naoki ; Tachibana, Takahisa ; Tomita, Nobuaki

  • Author_Institution
    Mater. & Components Dev. Center, YAMAHA Corp., Iwata
  • fYear
    2006
  • fDate
    6-10 Aug. 2006
  • Firstpage
    363
  • Lastpage
    366
  • Abstract
    A thermoelectric generator system was developed to convert low grade waste heat from a bulb inside an optical projection system into electricity. A new type of thermoelectric module with (Bi,Sb)2(Te,Se)3 compounds and intended for consumer use was installed in the system. Bismuth-telluride-based thermoelectric compounds with fine grains and unidirectional crystal orientation prepared using a rapid solidification technique, exhibited high performance at temperatures ranging from 298 to 473 K. Thermoelectric properties were optimized by controlling the microstructure and oxygen content of the specimens. A maximum conversion efficiency of 5.7% was obtained from the developed thermoelectric module at a temperature differential of 150 K (Tc = 323 K, Th = 473 K). A thermoelectric power generating system using a new type of aluminum alloy reflector was developed and evaluated for the prototype projection system
  • Keywords
    antimony alloys; bismuth alloys; crystal structure; electric power generation; optical projectors; rapid solidification; selenium alloys; tellurium alloys; thermoelectric conversion; thermoelectric power; waste heat; 298 to 473 K; Bi2Se3; Bi2Te3; Sb2Se3; Sb2Te3; aluminum alloy reflector; antimony telluride; bismuth selenide; bismuth telluride; conversion efficiency; crystal orientation; diantimony triselenide; heat-electricity conversion; low grade waste heat; microstructure; optical projection system; oxygen content; projector system; rapid solidification technique; thermoelectric generator system; thermoelectric modules; thermoelectric power generating system; Argon; Circuits; Energy conversion; Equations; Force measurement; Grain size; Raw materials; Temperature distribution; Thermoelectricity; Waste heat;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Thermoelectrics, 2006. ICT '06. 25th International Conference on
  • Conference_Location
    Vienna
  • ISSN
    1094-2734
  • Print_ISBN
    1-4244-0811-3
  • Electronic_ISBN
    1094-2734
  • Type

    conf

  • DOI
    10.1109/ICT.2006.331255
  • Filename
    4133305