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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal reaction mechanisms of nano- and micro-scale aluminum powders in carbon dioxide at low heating rate
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Thermal reaction mechanisms of nano- and micro-scale aluminum powders in carbon dioxide at low heating rate

机译:纳米和微米级铝粉在低加热速率下在二氧化碳中的热反应机理

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摘要

Thermal reaction mechanisms of nano-and micro-scale aluminum powders with a mean particle diameter of 50 nm and 1-2 mu m were investigated by a thermogravimetric analysis coupled with a differential scanning calorimetry. Thermal reaction characteristics of nano-scale aluminum powder are significantly different from that of micro-scale aluminum powder. The key reaction of nano-scale aluminum powder takes place in the low-temperature region, while for micro-scale aluminum powder, the key reaction takes place in the high-temperature region. Scanning electron microscopy and X-ray diffraction were also conducted to analyze the thermal reaction products. There is a striking difference for the thermal reaction products, which are the oxide shell disruption of micro-scale aluminum particles. X-ray diffraction patterns indicate that gamma-Al2O3 is detected before aluminum melting point for nano-scale aluminum powder, but for micro-scale aluminum powder, gamma-Al2O3 is detected after aluminum melting point. Alumina crystal structures of nano-and micro-scale aluminum powders are different at different mass gain stages. The sequence of the products of nano-and micro-scale aluminum powders is amorphous oxide -> gamma -> alpha-Al2O3 and amorphous oxide -> gamma -> theta -> alpha-Al2O3, respectively. Furthermore, thermal reaction mechanisms of nano-and micro-scale aluminum powders are discussed at a low heating rate.
机译:通过热重分析和差示扫描量热法研究了平均粒径为50 nm和1-2μm的纳米级和微米级铝粉的热反应机理。纳米级铝粉的热反应特性与微米级铝粉的热反应特性显着不同。纳米级铝粉的关键反应发生在低温区域,而微米级铝粉的关键反应发生在高温区域。还进行了扫描电子显微镜和X射线衍射分析热反应产物。热反应产物存在显着差异,即微尺度铝颗粒的氧化物壳破裂。 X射线衍射图表明,对于纳米级铝粉,在铝熔点之前检测到了γ-Al2O3,但是对于微米级铝粉,在铝熔点之后检测到了γ-Al2O3。纳米和微米级铝粉的氧化铝晶体结构在不同的质量增加阶段是不同的。纳米和微米级铝粉的产物顺序分别为无定形氧化物->γ->α-Al2O3和无定形氧化物->γ->θ->α-Al2O3。此外,讨论了在低加热速率下纳米级和微米级铝粉的热反应机理。

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