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Spark plasma sintering of CNT-NiAl nanocomposites - Process parameter, densification mechanism, and grain analysis

机译:CNT-NIAL纳米复合材料的火花血浆烧结 - 工艺参数,致密化机制和晶粒分析

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The densification process and grain analysis of consolidated NiAl-CNT composites at 1000, and at varied heating rates from 50/min to 150/min was investigated. The results revealed the effect of heating rate on the densification behaviour of the samples. The displacement of the composites decreased from 3.39 mm to 2.63 mm with increasing heating rate, while the porosity increased by 69% at rapid heating rate. The grain analysis of the sintered samples through the electron backscattered (EBSD) technique indicates the evolution of bigger grains as the heating rate proceeds higher. Furthermore, the mean grain size of the consolidated composites increased from 3.93 m, to 8.05 m due to the concentration of defects. Interestingly, there was no texture or predominance of any color evolution in the sintered materials.
机译:研究了1000℃的固结Nial-CNT复合材料的致密化过程和晶粒分析,并在50 / min至150 / min的不同加热速率下进行。 结果表明,加热率对样品致密化行为的影响。 复合材料的位移随着加热速率的增加而从3.39毫米达到2.63mm降低,而孔隙率以快速加热速率增加69%。 通过电子反向散射(EBSD)技术的烧结样品的晶粒分析表明,随着加热速率更高的情况,谷粒的演化表明了更大的晶粒。 此外,由于缺陷的浓度,固结复合材料的平均晶粒尺寸从3.93μm增加到8.05米。 有趣的是,烧结材料中没有任何颜色演化都没有质地或优势。

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