Microstructure and tensile properties of Mo alloy synthetically strengthened by nano-Y^sub 2^O3 and nano-CeO2

Nano-Y^sub 2^O3 and nano-CeO2 of different weight ratio mixed with deionizing water were doped into MoO2 powder by liquid-solid doping method. The diameter 1.80 and 0.18 mm alloy wires of Mo-0.3Y, Mo-0.3Ce, and Mo-0.15Y-0.15Ce were prepared through reduction, isostatic pressing, sintering, and drawi...

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Bibliographic Details
Published inRare metals Vol. 33; no. 1; p. 58
Main Authors Liu, Ren-zhi, Wang, Kuai-she, Feng, Peng-fa, An, Geng, Yang, Qin-li, Zhao, Hu
Format Journal Article
LanguageEnglish
Published Beijing Springer Nature B.V 01.02.2014
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Summary:Nano-Y^sub 2^O3 and nano-CeO2 of different weight ratio mixed with deionizing water were doped into MoO2 powder by liquid-solid doping method. The diameter 1.80 and 0.18 mm alloy wires of Mo-0.3Y, Mo-0.3Ce, and Mo-0.15Y-0.15Ce were prepared through reduction, isostatic pressing, sintering, and drawing. Tensile properties, second phase microstructure and fracture surface appearance of wires were analyzed. The better refining effect for Mo alloy powder can be gotten after two kinds of nanoparticle oxide doped into MoO2 than only one doped. Nano-Y^sub 2^O3 and nano-CeO2 have different influences on sintering process. For nano-CeO2, the constraining effect of grain growth focuses on the initial sintering stage, nano-Y^sub 2^O3 plays refining grains roles in the later densification stage. Nano-Y^sub 2^O3 is undistorted and keeps intact in the process of drawing; and nano-CeO2 is elongated and broken into parts in the drawing direction. The strengthening effect of nano-Y^sub 2^O3 and nano-CeO2 keeps the finer grains and superior tensile properties for Mo-0.15Y-0.15Ce wire.[PUBLICATION ABSTRACT]
ISSN:1001-0521
1867-7185
DOI:10.1007/s12598-013-0120-3