首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Synthesis and formation mechanism of ZrB2-Al2O3 composite powder starting from ZrO2, Al, and BN
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Synthesis and formation mechanism of ZrB2-Al2O3 composite powder starting from ZrO2, Al, and BN

机译:以ZrO2,Al和BN为原料的ZrB2-Al2O3复合粉末的合成及形成机理

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ZrB2-Al2O3 in situ composite powders were synthesized at 1550 degrees C via a novel solid-state precursor route using ZrO2, Al, and BN as raw materials. The final ZrB2-Al2O3 composite powders, consisting of large crystal Al2O3 particles (several micrometers) and fine ZrB2 particles (100-400 nm), form an interwoven network and are intimately mixed on a microscopic scale. The formation mechanism for ZrB2-Al2O3 composite powders comprises two steps: aluminothermic reduction of ZrO2, which generates Zr-Al alloy compounds and the coproducts Al2O3, then followed by a series of solid reactions between Zr and BN to give the ZrB, ZrN, and ZrB2 products. The aluminothermic reduction is a fast reaction, while the reaction between Zr and BN to obtain the final ZrB2 product is the limiting step in the conversion process of the precursor powders. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:ZrB2-Al2O3原位复合粉体是在1550℃下通过新颖的固态前驱路线以ZrO2,Al和BN为原料合成的。最终的ZrB2-Al2O3复合粉末由大晶体Al2O3颗粒(几个微米)和ZrB2细颗粒(100-400 nm)组成,形成交织网络,并在微观尺度上紧密混合。 ZrB2-Al2O3复合粉末的形成机理包括两个步骤:ZrO2的铝热还原,生成Zr-Al合金化合物和副产物Al2O3,然后Zr和BN之间发生一系列固相反应,得到ZrB,ZrN和ZrB2产品。铝热还原是一个快速反应,而Zr和BN之间的反应以获得最终ZrB2产物是前体粉末转化过程中的限制步骤。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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