Heat Treatment of TiH<SUB>2</SUB> Powder to Control Decomposition Phenomenon for Aluminum Foam Fabrication by Melt Route

  • Kadoi Kota
    Department of Materials Science and Engineering, Faculty of Science and Engineering, Waseda University
  • Babcsán Norbert
    Department of Materials Development, Institute for Logistics and Production Systems, Bay Zoltan Foundation for Applied Research
  • Nakae Hideo
    Research Institute for Materials Science and Technology, Waseda University

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  • Heat treatment of TiH2 powder to control decomposition phenomenon for aluminum foam fabrication by melt route

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Abstract

TiH2 powder has been used to fabricate aluminum foams as a blowing agent for more than two decades. The aim of this paper is to understand the detailed decomposition behavior of TiH2 powder and to control the phenomenon by a heat treatment for the fabrication of fine aluminum foams by the melt route. TiH2 powders whose qualities were different, were characterized using TG-DTA and XRD. As heat treatment factors, temperature and time were applied. We have found differences in the decomposition behavior between the as-received TiH2 powders. Regardless of quality of TiH2 powder, increasing temperature and time of the heat treatment in air elevates the decomposition temperature and decreases the amount of released hydrogen during reheating due to the oxide barrier layer formed on the powder surface. The influence of the heat treatment temperature on the decomposition modification is more significant than that of the time. To control the decomposition phenomenon of TiH2 powder, the heat treatment condition has to be optimized taking into account the quality and the purity of the powder.

Journal

  • MATERIALS TRANSACTIONS

    MATERIALS TRANSACTIONS 50 (4), 727-733, 2009

    The Japan Institute of Metals and Materials

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