首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Self-propagating combustion synthesis via an MSR process: An efficient and simple method to prepare (Ti, Zr, Hf)B2-Al2O3 powder nanocomposites
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Self-propagating combustion synthesis via an MSR process: An efficient and simple method to prepare (Ti, Zr, Hf)B2-Al2O3 powder nanocomposites

机译:通过MSR工艺进行的自蔓延燃烧合成:一种制备(Ti,Zr,Hf)B2-Al2O3粉末纳米复合材料的高效简便方法

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摘要

The synthesis of (Ti_(1-x)Zr_x)B2-Al2O3, (Ti_(1-x)Hf_x)B2-Al2O3 and (Zr_(1-x)Hf_x)B2-Al2O3 (x = 0,0.5 and 1) powder nanocomposites via a mechanochemical method using TiO2, ZrO2, HfO2, HBO2 and Al as the raw materials was investigated. The formation of the nanocomposites proceeds via a mechanically-induced self-sustaining reaction (MSR) process that involves several simultaneous reactions. The aluminothermic reductions of the T_MO2 and HBO2 produce Al2O3 and transition metal and boron elements, which in turn react to yield the diboride phase. The ignition of the complex combustion reaction occurred after a short milling time (15-30 min), instantly transforming most of the reactants into products. The sample composition was marked by the stoichiometry of the combustion reaction, and the resulting nanocomposites were analysed using XRD, ED, SEM, TEM and EDX techniques. The X-ray results confirmed the biphasic character of the prepared composite powder (T_MB2 and Al2O3 structures); minor amounts of the Zr and Hf oxides were also observed. The achieved microstructure was characterised by the agglomeration of Al2O3 nanocrystallites and diboride crystals with a diffraction domain size ranging between 100 and 300 nm.
机译:(Ti_(1-x)Zr_x)B2-Al2O3,(Ti_(1-x)Hf_x)B2-Al2O3和(Zr_(1-x)Hf_x)B2-Al2O3(x = 0,0.5和1)的合成以TiO2,ZrO2,HfO2,HBO2和Al为原料,通过机械化学方法研究了粉末纳米复合材料。纳米复合材料的形成通过机械诱导的自我维持反应(MSR)过程进行,该过程涉及多个同时反应。 T_MO2和HBO2的铝热还原反应生成Al2O3以及过渡金属和硼元素,它们反过来产生二硼化物相。短暂的研磨时间(15-30分钟)后,发生了复杂燃烧反应的着火,立即将大多数反应物转化为产物。通过燃烧反应的化学计量标记样品的组成,并使用XRD,ED,SEM,TEM和EDX技术分析所得的纳米复合材料。 X射线结果证实了所制备复合粉末的双相特性(T_MB2和Al2O3结构)。还观察到了少量的Zr和Hf氧化物。所获得的微结构的特征在于,Al 2 O 3纳米微晶和二硼化物晶体的团聚,其衍射域尺寸在100至300nm之间。

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