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Microstructure and oxidation resistance of porous NbAl3 intermetallic prepared by thermal explosion reaction

机译:热爆炸反应制备多孔NbAl3金属间化合物的组织和抗氧化性

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摘要

Porous Nb-Al intermetallic was prepared by thermal explosion (TE) of combustion synthesis (CS). The temperature profile, phase composition, open porosity and oxidation resistance of Nb-Al compact were investigated. The results showed that the significant exothermic reaction occurred, which means that an obvious TE appeared during heating. The volume expansion of 190% was observed, and the prepared sample exhibited interconnected pores with an open porosity of 65.7%. The porous NbAl3 intermetallic showed 'pest' oxidation in the temperature range of 500-600 degrees C, and followed the parabolic oxidation law at 400 degrees C. Moreover, due to the highly porous structure, this material had great potential for application to separation and heat insulation at a temperature range of room temperature to 400 degrees C.
机译:通过燃烧合成(CS)的热爆炸(TE)制备多孔Nb-Al金属间金属化合物。 研究了温度曲线,相组合物,Nb-Al紧凑型开放孔隙率和抗氧化性。 结果表明,发生显着放热反应,这意味着在加热过程中出现明显的TE。 观察到190%的体积扩增,制备的样品表现出孔隙率的相互连接的孔隙,为65.7%。 多孔NbAl3金属间金属间位于500-600℃的温度范围内的“害虫”氧化,并在400℃下进行抛物线氧化法。此外,由于高度多孔的结构,这种材料具有巨大的应用分离和分离潜力 室温温度范围内的隔热至400℃。

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