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首页> 外文期刊>Technical physics >Parameters of Iron and Aluminum Nano- and Micropowder Activity upon Oxidation in Air under Microwave Irradiation
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Parameters of Iron and Aluminum Nano- and Micropowder Activity upon Oxidation in Air under Microwave Irradiation

机译:微波辐射下空气氧化时铁和铝纳米和微淋液活性的参数

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摘要

Iron nanopowders and iron and aluminum micropowders exposed to microwave radiation with a frequency of 9.4 GHz and a power density of 80 W/cm_(2)at a pulse repetition rate of 400 Hz have been investigated. According to the results of differential thermal analysis, the microwave radiation caused nonmonotonic changes in the thermal properties of the A1 and Fe powders. After irradiation of the iron nanopowder, the temperature of the onset of its oxidation increased from 150.01 to 158.75°C; in the case of the micropowder, the temperature nonmonotonically changed from 150.00 to 275.38°C. The specific heat of oxidation of the Fe nanopowder increased by 17.3% at maximum, while in the Fe micropowder the maximum attained increase was 13%. For the Al micropowder, the maximum increase in the specific heat of oxidation was found to be 59.7%. Microwave irradiation leads to the formation of electron avalanches, which reduce metal ions in their oxides. At the same time, at certain irradiation doses the generated electron flows oxidize the reduced metals, which is reflected in the nonmonotonic variation in the properties of a material. The increase in the specific heat of oxidation is related to the participation of energy-saturated states of the metals in the oxidation processes.
机译:已经研究了频率为9.4GHz的微波辐射的铁纳米粉末和铁和铝微量辐射,并在400Hz的脉冲重复率下的频率为9.4GHz和80 w / cm_(2)的功率密度。根据差分热分析的结果,微波辐射导致A1和Fe粉末的热性能下的非单调变化。在纳米粉末照射后,其氧化的发作的温度从150.01增加到158.75°C;在微倍频机的情况下,温度从150.00变为275.38℃。 Fe纳米液的氧化的比热量最大增加17.3%,而在Fe microcopder中最大达到的升高为13%。对于Al微隆,发现氧化热的最大增加为59.7%。微波辐射导致电子雪崩的形成,从而减少其氧化物中的金属离子。同时,在某些照射剂量时,所产生的电子流量氧化还原金属,其反映在材料的性质中的非单调变化中。氧化热的增加与金属在氧化过程中的能量饱和状态的参与有关。

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