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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of the dispersion of nanometric silica particles on the thermal stability of a nanostructured iron based powder
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Effect of the dispersion of nanometric silica particles on the thermal stability of a nanostructured iron based powder

机译:纳米二氧化硅颗粒的分散对纳米结构铁基粉末热稳定性的影响

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摘要

An iron based powder has been mechanically ground with nanometric silica particles in order to increase the thermal stability of the nanostructure. The powder has been annealed at different temperatures between 200 and 750℃. Microhardness tests revealed that without the addition of SiO_2, the hardness is constant up to 400℃, whereas the dispersion of SiO_2 keeps a constant hardness value up to 600℃. A similar trend has been obtained for the microstructural parameters (crystalline domain size and dislocation density) obtained by a line profile analysis of the XRD spectra; the powders lose the nanostructure after annealing at 600℃ for the material without SiO_2 and above 750℃ with SiO_2 addition. Thermal analysis has been used to calculate the activation energy of the grain growth process and to extrapolate the temperature at which the powder could be sintered, without losing nanostructure, by spark plasma sintering (SPS). Preliminary attempts of sintering by SPS seem to confirm the indication obtained by the present work.
机译:为了增加纳米结构的热稳定性,已经将铁基粉末与纳米二氧化硅颗粒机械研磨。粉末已在200至750℃的不同温度下退火。显微硬度测试表明,在不添加SiO_2的情况下,硬度最高可保持在400℃,而SiO_2的分散度可保持恒定的硬度值,最高可达600℃。通过XRD光谱的线轮廓分析获得的微观结构参数(晶畴尺寸和位错密度)也获得了类似的趋势;对于不含SiO_2的材料和在750℃以上添加SiO_2的材料,粉末在600℃退火后会失去纳米结构。热分析已用于计算晶粒生长过程的活化能,并通过火花等离子体烧结(SPS)推断出可以在不损失纳米结构的情况下烧结粉末的温度。通过SPS进行的初步烧结似乎可以证实本工作获得的指示。

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