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Influence of Sintering Temperature on the Structure and Properties of Powder Iron Aluminide Fe3Al

机译:烧结温度对粉末铁铝酸铁铝合金铝合金的影响及性能

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摘要

The paper examines the impact of heating temperature and isothermal holding time during sintering in a vacuum on the phase composition, structure, and mechanical properties of Fe3Al iron aluminide synthesized from a mixture of iron and aluminum powders. Dilatometric studies have shown the complexity of occurring changes in the density of the billets during sintering. First, the porosity increases from 15% in the initial billet to 45% during sintering at 950 degrees C, and after decreases to 5% at a sintering temperature of 1450 degrees C. The synthesis of intermetallic compounds at powder mixture heating was examined by the X-ray diffraction method. It was shown that up to 30% of intermetallic compound Fe(2)Al(5)is formed during an hour-long isothermal holding at 600 degrees C. Increasing the holding time to 3 hours or temperature to 950 degrees C results in the formation and gradual growth of FeAl (B2) aluminide content. With a further increase of sintering temperature up to 1450 degrees C, the amount of A2 phase becomes bigger, and concentration of iron and aluminum in it approaches to stoichiometric ratio Fe3Al. The mechanical properties of iron aluminide intensify with increasing sintering temperature, especially rapidly after sintering at 1450 degrees C, when planar pores close and perfect interparticle contacts form.
机译:本文研究了真空烧结过程中加热温度和等温时间对由铁和铝粉混合物合成的Fe3Al铁铝化物相组成、结构和力学性能的影响。膨胀计研究表明,烧结过程中坯料密度发生变化的复杂性。首先,在950℃烧结时,孔隙率从初始坯料中的15%增加到45%,然后在1450℃烧结温度下降低到5%。用X射线衍射法研究了粉末混合物加热时金属间化合物的合成。结果表明,在600°C下保温一小时,可形成高达30%的金属间化合物Fe(2)Al(5)。将保温时间增加到3小时或温度增加到950°C可导致FeAl(B2)铝化物含量的形成和逐渐增长。随着烧结温度进一步升高到1450℃,A2相的数量变大,其中的铁和铝浓度接近化学计量比Fe3Al。随着烧结温度的升高,铁铝化物的机械性能增强,尤其是在1450℃烧结后,当平面孔隙闭合并形成完美的粒子间接触时,机械性能增强。

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