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Studies Concerning the Effect of Nitrogen on the Oxidation Behavior of TiAl-Based Intermetallics at 900℃

机译:氮对TiAl基金属间化合物在900℃氧化行为的影响

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The oxidation behavior of the titanium aluminides Ti-50Al and Ti-48Al-5Nb has been investigated in Ar + 20%O_2 and in air at 900℃. Thermogravimetric studies in combination with structural analyses using optical metallography, SEM/EDX and X-ray diffraction show a marked influence of nitrogen on the composition and growth rate of the oxide scales. For a more detailed study concerning the effect of nitrogen on the scale-growth kinetics, thermogravimetr-ical analyses were carried out during which the gas atmosphere was changed from air to Ar-O_2, and vice versa, without intermediate cooling of the specimen. The results show, that nitrogen adversely affects the formation of the initially formed alumina scale and that it enhances the growth rate of the rapidly growing Ti-rich oxide. This effect was observed in both alloys investigated, although the thermogravimetric results at first sight indicated an opposite effect for the Nb-containing alloy. This apparent contradiction is caused by internal oxidation which occurs in this alloy during exposure in Ar-O_2.
机译:在Ar + 20%O_2和900℃的空气中研究了铝化钛Ti-50Al和Ti-48Al-5Nb的氧化行为。热重研究结合使用光学金相,SEM / EDX和X射线衍射的结构分析显示,氮对氧化皮的组成和生长速率有显着影响。为了更详细地研究氮气对水垢生长动力学的影响,进行了热重分析,在此过程中,气体气氛从空气变为Ar-O_2,反之亦然,而无需对样品进行中间冷却。结果表明,氮不利地影响了最初形成的氧化铝水垢的形成,并提高了快速生长的富钛氧化物的生长速率。在两种合金中都观察到了这种效果,尽管乍一看热重分析结果表明含Nb合金的效果相反。这种明显的矛盾是由于在Ar-O_2中暴露期间该合金中发生的内部氧化引起的。

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