[1]MA Qian.Powder Metallurgy of Titanium at the 12 th World Conference on Titanium[J].中国材料进展,2011,(8):050-53.
MA Qian. Powder Metallurgy of Titanium at the 12 th World Conference on Titanium[J].MATERIALS CHINA,2011,(8):050-53.
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Powder Metallurgy of Titanium at the 12 th World Conference on Titanium(
)
中国材料进展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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- 期数:
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2011年第8期
- 页码:
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050-53
- 栏目:
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特约研究论文
- 出版日期:
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2011-08-25
文章信息/Info
- Title:
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Powder Metallurgy of Titanium at the 12 th World Conference on Titanium
- 作者:
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MA Qian
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( ARC CoE for Design in Light Metals,School of Mechanical and Mining Engineering,The University of Queensland,Brisbane Qld 4072, Australia)
- Author(s):
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MA Qian
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( ARC CoE for Design in Light Metals,School of Mechanical and Mining Engineering,The University of Queensland,Brisbane Qld 4072, Australia)
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- 关键词:
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power metallurgy of titanium; cold compaction and sinter; microwave assisted sintering
- 文献标志码:
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A
- 摘要:
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The 12 th World Conference on Titanium has seen the presentation of a number of noteworthy 〖JP〗developments that were aimed at achieving cost reductions and/or improved constitutional and microstructural capabilities through the conventional coldcompactionandsinter powder metallurgy (PM) approach. This review discusses several such developments,including the scavenging of oxygen and chlorine from Ti powder compacts during sintering by minor additions of rare earth compounds, the advantages of PM Ti fabrication with TiH2 powder over elemental Ti powder, the efforts to develop ultrafine assintered microstructures from the use of TiH2 powder, the design of sintering pathways for high solute content alloys such as Ti10V2Fe3Al, and the positive implications of microwaveassisted sintering of commercially pure (CP) Ti and Ti alloys.
- Abstract:
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The 12 th World Conference on Titanium has seen the presentation of a number of noteworthy 〖JP〗developments that were aimed at achieving cost reductions and/or improved constitutional and microstructural capabilities through the conventional coldcompactionandsinter powder metallurgy (PM) approach. This review discusses several such developments,including the scavenging of oxygen and chlorine from Ti powder compacts during sintering by minor additions of rare earth compounds, the advantages of PM Ti fabrication with TiH2 powder over elemental Ti powder, the efforts to develop ultrafine assintered microstructures from the use of TiH2 powder, the design of sintering pathways for high solute content alloys such as Ti10V2Fe3Al, and the positive implications of microwaveassisted sintering of commercially pure (CP) Ti and Ti alloys.
更新日期/Last Update:
2011-10-20