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首页> 外文期刊>Journal of the European Ceramic Society >Fabrication and microstructural characterization of the novel optical ceramic consisting of alpha-Al2O3@amorphous alumina nanocomposite core/shell structure
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Fabrication and microstructural characterization of the novel optical ceramic consisting of alpha-Al2O3@amorphous alumina nanocomposite core/shell structure

机译:由α-Al2O3组成的新型光学陶瓷的制造和微结构表征,包括α-Al2O3,无定形氧化铝纳米复合芯/壳结构

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In this study, alpha-Al2O3@amorphous alumina nanocomposite core-shell structure was synthesized from AICl(3) and the commercial alpha-Al2O3 nanoparticles as the starting materials via a wet chemical route. The results indicated that the shell material mainly comprised of ammonium chloride and boehmite phases. Boehmite was transformed to the amorphous and gamma-Al2O3 phases after the calcination process and the shell material was completely converted to gamma-Al2O3 at 1000 degrees C. However, for the alpha-Al2O3@amorphous alumina core-shell nanoparticles were completely converted to alpha-Al2O3 at 1000 degrees C. It can be concluded that alpha-Al2O3 core particles, as the seed crystalline, help to transforming of gamma-Al2O3 phase as the shell material directly without forming transitional phases to alpha-Al2O3. The optical polycrystalline alumina was fabricated using spark plasma sintering of alpha-Al2O3@amorphous alumina core-shell nanocomposite. The body sintered has a final density of similar to 99.8% and the in-line transmittance value is similar to 80% within the IR range.
机译:在本研究中,通过湿化学途径从AiCl(3)和商业α-Al2O3纳米颗粒中合成Alpha-Al2O3 @非晶氧化铝纳米复合核 - 壳结构。结果表明,壳体材料主要由氯化铵和勃姆石相。在煅烧过程中,勃姆石转化为无定形和γ-Al2O3相,壳体物质在1000℃下完全转化为γ-Al 2 O 3。然而,对于Alpha-Al2O3,无定形氧化铝核心 - 壳纳米颗粒完全转化为α -Al2O3以1000℃。可以得出结论,α-Al2O3核心颗粒作为种子结晶,有助于直接改变γ-Al 2 O 3相的γ-Al 2 O 3相,而不形成过渡相至α-Al2O3。使用火花等离子体烧结的α-Al2O3甲酸核心 - 壳纳米复合材料制造光学多晶氧化铝。体烧结的最终密度类似于99.8%,在线透射率值类似于IR范围内的80%。

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