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Soviet Powder Metallurgy and Metal Ceramics

, Volume 24, Issue 12, pp 914–917 | Cite as

Influence of manganese on sintering processes in the Ti-Fe system 1. Volume changes in sintering of Ti-Fe-Mn compacts

  • L. I. Kivalo
  • V. V. Skorokhod
Theory and Technology of Sintering, Thermal, and Chemicothermal Treatment Processes

Keywords

Manganese Volume Change Sinter Process 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Literature cited

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    R. H. Wiswall and J. J. Reilly, Patent 3508414 (USA). Method for Storing Hydrogen, Published April 28, 1970.Google Scholar
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    R. H. Wiswall and J. J. Reilly, Patent 3516263 (USA). Method for Storing Hydrogen, Published June 23, 1970.Google Scholar
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    H. H. Van Mall, Patent 2650276 (Federal Republic of Germany). Ti und Eisenhaltigen Material Zur Speisherung von Wasserstoff/Van Mall H. H., Published May 12, 1977.Google Scholar
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    L. I. Kivalo, V. V. Skorokhod, and N. F. Grigorenko, “Volume changes in sintering of compacts of mixtures of titanium and iron powders,” Poroshk. Metall., No. 5, 17–21 (1982).Google Scholar
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    L. I. Kivalo, V. V. Skorokhod, and N. F. Grigorenko, “The influence of nickel on the sintering processes in the Ti-Fe system. Report 1,” Poroshk. Metall., No. 7, 34–39 (1983).Google Scholar
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    Y. Murakami and J. Endjyô, “Investigation of the Ti-rich Ti-Fe-Mn alloy system (2nd report). On the liquidus surface of the Ti-Fe-Mn alloy system,” J. Jpn. Inst. Met.,22, No. 5, 265–269 (1958).Google Scholar
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    D. Dew-Hughes, “The addition of Mn and Al to the hydriding Ti-Fe compound. Range of homogeneity and lattice parameters,” Met. Trans.,11A, No. 7, 1219–1225 (1980).Google Scholar

Copyright information

© Plenum Publishing Corporation 1986

Authors and Affiliations

  • L. I. Kivalo
    • 1
  • V. V. Skorokhod
    • 1
  1. 1.Institute of Problems of Material SciencesAcademy of Sciences of the Ukrainian SSRUkraine

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