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陽極弧等離子體制備鎳納米粉的機理研究
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TG146.15

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甘肅省自然科學基金(3ZS042-B25-017)和甘肅省科技攻關(guān)基金(GS012-A52-047)


Study on the Growth Mechanism of Ni Nanopowders Prepared by Anodic Arc Plasma
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    摘要:

    根據(jù)會屬結(jié)晶的熱力學和動力學理論,對采用陽極弧放電等離子體方法制備金屬納米粉的生長過程建立了一個近似的理論模型。研究了等離子體的產(chǎn)生、金屬的蒸發(fā)、晶核的形成和生長機理。對影響納米粉性能的各種工藝參數(shù)進行了理論分析。并利用X射線衍射(XRD)、透射電子顯微鏡(TEM)和相應(yīng)選區(qū)電子衍射(ED)對樣品的晶體結(jié)構(gòu)、形貌、粒度及其分布進行表征。結(jié)果表明:采用陽極弧等離子體法制備的球形鎳納米粒予純度高,晶格結(jié)構(gòu)與相應(yīng)的塊體物質(zhì)相同,為fcc結(jié)構(gòu)的晶態(tài),平均粒度為16nm,粒度范圍分布在10nm~40nm。電源功率、電弧電流、氣體壓力及冷卻溫度是影響晶核的形成和生長的主要因素。通過適當調(diào)整各項工藝參數(shù),可有效地控制粒子的粒度。

    Abstract:

    Based on thermodynamics and kinetics theory, a theoretical model to illuminate the process for preparing metal nanopowders by anodic arc discharging plasma method was set up, and the origin of plasma, metallic evaporation, the mechanism of particle nucleation and growth were investigated. The influences of various technology parameters on the properties of nanopowders by Anodic Arc Plasma were also discussed. In addition, the samples prepared by this method were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and the corresponding electron diffraction (ED) to determine the crystal structure, morphology, particle size and particle size distribution. The experimental results show that the crystal structure of the nanopowder sample is the same as the bulk material, being fcc structure, with an average size about 16 nm, distribution ranging from 10 nm to 40 nm. The technology parameters (such as the power supply, the pressure of gas, the arc current intensity, water-cooling condition, etc.) have great effect on the particle nucleation and growth, the particle size can be effectively controlled by varying the technological parameters.

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魏智強 夏天東 馬軍 張材榮 馮旺軍 閆鵬勛.陽極弧等離子體制備鎳納米粉的機理研究[J].稀有金屬材料與工程,2007,36(1):121~125.[Wei Zhiqiang, Xia Tiandong, Ma Jun, Zhang Cairong, Feng Wangjun, Yah Pengxun. Study on the Growth Mechanism of Ni Nanopowders Prepared by Anodic Arc Plasma[J]. Rare Metal Materials and Engineering,2007,36(1):121~125.]
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  • 最后修改日期:2005-12-20
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