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首页> 外文期刊>The Physics of Metals and Metallography >Investigation of the Composition and Properties of a Cr2AlC MAX Phase-Based Material Prepared by Metallothermic SHS
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Investigation of the Composition and Properties of a Cr2AlC MAX Phase-Based Material Prepared by Metallothermic SHS

机译:通过冶金阶段制备的CR2ALC最大相材料的组成和性质的研究

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摘要

Cast composite material based on Cr2AlC MAX phase has been prepared by metallothermic self-propagating high-temperature synthesis (SHS) from a mixture of powders of chromium oxide, aluminum, and carbon. The experiments have been performed using an SHS reactor with a volume V of 3 L under an excess inert gas (Ar) pressure (P = 5 MPa). The prepared material has been studied by X-ray diffraction analysis, scanning electron microscopy, and local microstructural analysis. The quantitative analysis has been performed by the Rietveld method. The electrical resistivity was measured in the 100-1300 K temperature range. The resulting material is an electrical conductor with metallic conductivity in the 100-1300 K temperature range, and has the electrical resistivity of the same order as the samples containing 100% Cr2AlC.
机译:基于CR2ALC MAX相的铸造材料通过从氧化铬,铝和碳的粉末的混合物中金属热传播高温合成(SHS)制备。 通过在过量的惰性气体(AR)压力(AR)压力下,使用SHS反应器进行了具有3L体积V的SHS反应器进行了实验(P = 5MPa)。 已经通过X射线衍射分析,扫描电子显微镜和局部微观结构分析研究了制备的材料。 定量分析已经通过RIETVELD方法进行。 在100-1300k温度范围内测量电阻率。 所得材料是电导体,具有100-1300k温度范围内的金属导电,并且具有与含有100%CR2ALC的样品相同的顺序的电阻率。

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