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Investigation on mechanochemical behavior of Al/Mg-B2O3-Nb system reactive mixtures to synthesize niobium diboride

机译:Al / Mg-B2O3-Nb体系反应混合物合成二硼化铌的力学化学行为研究

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摘要

Aluminum and magnesium were used in the M-B2O3-Nb (M = Al, Mg) system to synthesize niobium diboride (NbB2) via a mechanochemical process. The phase transformation and structural evaluation were investigated by means of X-ray diffractometry, scanning electron microscopy (SEM), transmission electron microscopy (TEM) and differential thermal analysis techniques (DTA). Unlike thermodynamic possibility and DTA results, negligible aluminothermic reaction was occurred in the system and AINb(2) intermediate phase was formed during milling. On the other hand, nanostructure NbB2 was mechanosynthesized by the magnesiothermic reduction after 2.4 h of milling and the type of reactions was mechanically induced self-sustaining reaction (MSR). DTA results revealed that Mg-3(BO3)(2) was largely formed during the thermal process, while the quantity of this by-product extremely decreased during the mechanochemical synthesis and completely eliminated after 5 h of milling. Scanning and transmission electron microscopy observations confirmed that the range of particle size was within 100 nm. (C) 2014 Elsevier Ltd. All rights reserved.
机译:铝和镁用于M-B2O3-Nb(M = Al,Mg)系统中,通过机械化学过程合成二硼化铌(NbB2)。通过X射线衍射,扫描电子显微镜(SEM),透射电子显微镜(TEM)和差热分析技术(DTA)研究了相变和结构评价。与热力学可能性和DTA结果不同,在系统中发生的铝热反应可忽略不计,并且在研磨过程中形成了AINb(2)中间相。另一方面,在研磨2.4小时后,通过磁热还原法机械合成了纳米结构NbB2,反应类型为机械诱导的自持反应(MSR)。 DTA结果表明,Mg-3(BO3)(2)在热处理过程中大量形成,而该副产物的量在机械化学合成过程中急剧减少,在研磨5小时后被完全消除。扫描和透射电子显微镜观察证实,粒径范围在100nm以内。 (C)2014 Elsevier Ltd.保留所有权利。

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