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- W2025284966 abstract "<TEX>$ZrB_2$</TEX>-based composites are candidate materials for ultra-high temperature materials (UHTMs). <TEX>$ZrB_2$</TEX> has become an indispensable ingredient in UHTMs, due to its high melting temperature, relatively low density, and excellent resistance to thermal shock or oxidation. <TEX>$ZrB_2$</TEX> powders are usually synthesized by solid state reactions such as carbothermal, borothermal, or combined carbothermal reaction. SiC is added to this system in order to enhance the oxidation resistance of <TEX>$ZrB_2$</TEX>. In this study, <TEX>$ZrB_2$</TEX>?based composites were successfully synthesized and densified through two different processing paths. <TEX>$ZrB_2$</TEX> or <TEX>$ZrB_2$</TEX> 25 vol.%SiC was fully synthesized from oxide starting materials with reducing agents after heat treatment at 1400<TEX>$^{circ}C$</TEX>. Besides, <TEX>$ZrB_2$</TEX>?20 vol.%SiC was fully densified with <TEX>$B_4C$</TEX> as a sintering additive after hot pressing at 1900<TEX>$^{circ}C$</TEX>. The synthesis mechanism and the effect of sintering additives on densification of <TEX>$ZrB_2$</TEX> ?SiC composites were also discussed." @default.
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- W2025284966 date "2009-12-28" @default.
- W2025284966 modified "2023-10-18" @default.
- W2025284966 title "Fabrication of ZrB2-based Composites for Ultra-high Temperature Materials" @default.
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- W2025284966 doi "https://doi.org/10.4150/kpmi.2009.16.6.442" @default.
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