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Structure and Properties of a Composite Material Obtained by Thermal Explosion in a Mixture of Ni + Al + Cr2O3

机译:通过Ni + Al + Cr2O3混合物热爆炸获得的复合材料的结构和性质

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The synthesis of a composite material by thermal explosion in a reaction mixture of Ni + Al + Cr2O3 was studied. The thermodynamic parameters of combustion of the systems studied were estimated to predict the composition of the inorganic products (condensed or gaseous) of self-propagating high-temperature synthesis and calculate the adiabatic combustion temperature. It is shown that the synthesis process involves competing reactions in the sample volume which are responsible for the formation of a multiphase product. The influence of the content of Cr2O3 in the reaction system on the strength characteristics of the product synthesis was studied. The microstructure of the synthesized samples was examined, and their micro-hardness, toughness and residual porosity were determined. The possibility of obtaining a homogeneous material based on NiAl intermetallic compound containing dissolved chromium and chromium oxide nanoparticles is shown.
机译:研究了Ni + Al + Cr2O3的反应混合物中通过热爆炸合成复合材料。 研究了研究的系统的燃烧的热力学参数,以预测自蔓延高温合成的无机产物(浓缩或气态)的组成,并计算绝热燃烧温度。 结果表明,合成过程涉及对样品体积中的竞争反应,其负责形成多相产物。 研究了CR2O3中CR2O3含量对产物合成强度特性的影响。 检查了合成样品的微观结构,确定了它们的微硬度,韧性和残留孔隙率。 示出了基于含Nial金属间化合物获得含有溶解铬和氧化铬纳米颗粒的均匀材料的可能性。

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