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Grain boundary mobility in Fe-base oxide dispersion strengthened PM2000 alloy

机译:铁基氧化物弥散强化PM2000合金的晶界迁移率

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摘要

It has been possible to measure the average interfacial velocities of grain boundaries during the process of recrystallisation of an oxide dispersion-strengthened iron-base alloy manufactured using the mechanical alloying technique. The measurements could be made using optical microscopy because the recrystallised grains are orders of magnitude larger than the surrounding unrecrystallised material. Furthermore, the peculiar way in which the alloy recrystallises, made it possible to observe large, flat segments of boundaries as they advanced into the higher energy matrix. The data have been analysed bearing in mind the pinning effect of the non-random distribution of oxide particles. It is concluded that the boundaries have a high mobility. This conclusion adds to the growing evidence that the alloy has great difficulty in nucleating recrystallisation because of the ultrafine and uniform starting-microstructure in which the grain boundary junctions are so closely spaced that they prevent strain-induced grain boundary migration; in other words, the junctions themselves are powerful pinning points.
机译:在使用机械合金化技术制造的氧化物弥散强化铁基合金的再结晶过程中,可以测量晶界的平均界面速度。可以使用光学显微镜进行测量,因为重结晶的晶粒比周围的未重结晶的材料大几个数量级。此外,合金重结晶的独特方式使得可以观察到大而平坦的边界段,因为它们进入了更高的能量矩阵。考虑到氧化物颗粒非随机分布的钉扎效应,对数据进行了分析。结论是边界具有高迁移率。这一结论增加了越来越多的证据,表明合金具有超细且均匀的起始微观结构,其中晶界结的间距非常小,以至于它们可以防止应变诱导的晶界迁移,因此,合金难以成核再结晶。换句话说,连接点本身就是强大的固定点。

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