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Comparison of the Oxidation Process in Pure Iron and Diluted Fe-Si Alloys: A Transmission Mossbauer Spectroscopy Study

机译:纯铁氧化过程的比较纯铁和稀释Fe-Si合金:迁移迁移型莫斯贝尔光谱研究

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摘要

The room temperature study of polycrystalline iron, Fe0.99Si0.01 and Fe0.97Si0.03 alloys, was performed using the Fe-57 transmission Mossbauer spectroscopy (TMS). The TMS measurements allow us to determine changes of chemical composition and content of iron oxides in the studied samples during exposure to air at 570, 870 and 1070 K. The results indicate that the chemical composition of samples changes significantly and it is strongly dependent on the temperature at which the studied samples are exposed to air. Moreover, it was shown that the addition of few atomic percent of Si impurities to iron leads to a significant slowdown of the internal oxidation process. The iron and silicon internal oxidation kinetics for Fe0.99Si0.01 and Fe0.97Si0.03 alloys were calculated using the Deal-Grove model. The activation energies E (A) for the internal oxidation of iron atoms in studied Fe-Si alloys were estimated: E (A) = 1.46 (3) eV for Fe0.99Si0.01 and E (A) = 1.62 (6) eV for Fe0.97Si0.03.
机译:使用Fe-57透射母动谱系谱(TMS)进行多晶铁,Fe0.90.0.01和Fe0.97SI0.03和Fe0.97SI0.03合金的室温研究。 TMS测量允许我们在暴露于570,870和1070K的空气中确定所研究样品中的化学成分和氧化铁含量的变化。结果表明样品的化学成分显着变化,强烈依赖于 研究样品暴露在空气中的温度。 此外,表明将少量Si杂质的Si杂质添加到内部氧化过程的显着放缓。 使用交易小组模型计算Fe0.99SI0.01和Fe.97SI0.03和Fe.97SI0.03合金的铁和硅内氧化动力学。 估计研究Fe-Si合金中铁原子内部氧化的活化能量E(a):E(a)= 1.46(3)EV用于Fe0.99si0.01和E(a)= 1.62(6)eV fe0.97si0.03。

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