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Design of composite porous cermets synthesized by hydrothermal treatment of CrAl powder followed by calcination

机译:CrAl粉水热处理后煅烧合成的复合多孔金属陶瓷的设计

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The microstructure of the porous Cr–Al metal–oxide cermet was studied by means of XRD, SEM, EDX as well as IR and Raman spectroscopy. This cermet was synthesized by mechanical alloying of Cr–Al powders in an AGO-2 planetary ball mill followed by hydrothermal treatment in a special stainless steel die and calcination in air. As a result, a highly porous monolith comprised of metal-like particles randomly distributed in the oxide matrix (Cr2O3 and Al2O3) was formed. Two types of the composite cores were found in cermets. The first one consisted of chromium phase containing nanoparticles sized from 50 to 140 nm and Al-enriched phase at the interfaces. The second one consisted of new chromium oxide phases with hexagonal Cr2N-like and fcc CrN-like structures probably with Cr2O and CrO stoichiometry. These new phases were stabilized within aggregates of the nanocomposite particles containing inclusions of alumina. The relations between different preparation stages and the cermet microstructure are discussed.
机译:通过XRD,SEM,EDX以及IR和拉曼光谱研究了多孔Cr-Al金属氧化物金属陶瓷的微观结构。该金属陶瓷是通过在AGO-2行星式球磨机中对Cr-Al粉进行机械合金化,然后在特殊的不锈钢模具中进行水热处理并在空气中煅烧而合成的。结果,由金属状颗粒组成的高度多孔的整体结构随机分布在氧化物基质(Cr 2 O 3 和Al 2 O 3 )形成了。在金属陶瓷中发现了两种类型的复合芯。第一个由含有50至140 nm纳米粒子的铬相和界面处富铝相组成。第二种由新的六方相Cr 2 N的铬氧化物相和可能具有Cr 2 O和CrO化学计量的fcc CrN样结构组成。这些新相稳定在包含氧化铝夹杂物的纳米复合颗粒的聚集体中。讨论了不同制备阶段与金属陶瓷微结构之间的关系。

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