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Static and Cyclic Oxidation of Ti–44Al and Ti–44Al–xNb Alloys

机译:Ti–44Al和Ti–44Al–xNb合金的静态和循环氧化

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Binary, Ti–44Al, and ternary, Ti–44Al–xNb (x=4, 8, and 11) alloys were subjected to static and cyclic oxidation in air up to a period of 1 week at 850 and 950°C. The oxidation behavior is characterized by plotting a graph between weight gain as a function of time or number of cycles. The binary alloy undergoes the most severe oxidation while Nb provides resistance to oxidation, which increases with an increase in concentration. Oxides were examined by SEM and EDX was used to perform chemical analysis. Alternate oxide layers rich in alumina and titania were found along with an aluminum-depleted zone underneath the oxide scale. Different microstructures were observed for the alloys subjected to static- and cyclic-heating modes. Defects like twins and stacking faults were generated after a static mode of heating, while transformation products at the grain boundaries dominate the microstructures for samples subjected to cyclic heating.
机译:二元,Ti-44Al和三元,Ti-44Al-xNb(x = 4、8和11)合金在空气中于850和950°C下经受静态和循环氧化,长达1周的时间。氧化行为的特征是绘制重量增加与时间或循环次数之间的关系图。二元合金遭受最严重的氧化,而Nb提供抗氧化性,该抗氧化性随着浓度的增加而增加。通过SEM检查氧化物,并使用EDX进行化学分析。发现富含氧化铝和二氧化钛的交替氧化物层,以及在氧化皮下方的贫铝区。合金在静态和循环加热模式下观察到不同的微观结构。在静态加热模式下,会产生诸如孪晶和堆垛层错之类的缺陷,而晶界处的相变产物则对循环加热样品的微观结构起着主导作用。

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