Synthesis of W–Zr–Ti Alloy via Combustion in the WO3–ZrO2–TiO2–Mg System
— We have studied the self-propagating high-temperature synthesis (SHS) process due to the combustion of a WO 3 + ZrO 2 + TiO 2 + Mg multicomponent mixture. The ratio of the oxide phases and excess Mg content have been shown to have a significant effect on the phase composition of the synthesized ma...
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Veröffentlicht in: | Inorganic materials 2021-05, Vol.57 (5), p.498-502 |
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Format: | Artikel |
Sprache: | eng |
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We have studied the self-propagating high-temperature synthesis (SHS) process due to the combustion of a WO
3
+ ZrO
2
+ TiO
2
+ Mg multicomponent mixture. The ratio of the oxide phases and excess Mg content have been shown to have a significant effect on the phase composition of the synthesized material. Increasing the WO
3
content of the starting mixture from 7.4 to 59.6% raises the adiabatic combustion temperature from 1560 to 3099 K and reduces the percentage of Zr and Ti metals in the synthesis product, which pass into the W〈Zr,Ti〉 solid solution. We have optimized the composition of the starting mixture, 50.6% WO
3
+ 6.9% ZrO
2
+ 4.5% TiO
2
+ 38% Mg, so that its combustion yields a semifinished product consisting of W〈Zr,Ti〉 alloy, MgO, and Mg. After acid leaching, we have obtained a single-phase W〈Zr,Ti〉 substitutional solid solution. Chemical analysis and X-ray diffraction data demonstrate that the alloy thus prepared is similar in composition to W
0.66
Zr
0.17
Ti
0.17
. |
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ISSN: | 0020-1685 1608-3172 |
DOI: | 10.1134/S0020168521050095 |