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Creep behaviour of iron-aluminium-chromium intermetallics strengthened by nano-sized oxide particles

机译:纳米氧化物颗粒增强铁-铝-铬金属间化合物的蠕变行为

摘要

The creep behaviour of some oxide-dispersion-hardened Fe-Al-Cr iron aluminides has been examined at 700-750°C and compared with similar dispersion-hardened steels and commercial Fe-Cr alloys. Very fine oxide particles form during material processing, which are generally fcc Y2O3 phase with a thin disk morphology, and partially coherent with the ordered FeAl matrix. The materials show excellent creep strength at the tested temperatures which may be related to the oxide particles being barriers opposing dislocation motion. Precise details of dislocation-particle interactions are not clear, but it is suggested that the fine particles are cut relatively easily by the dislocations. © 2014 Elsevier B.V.
机译:已经在700-750°C下检查了一些氧化物弥散硬化的Fe-Al-Cr铁铝化物的蠕变行为,并将其与类似的弥散硬化钢和商用Fe-Cr合金进行了比较。在材料加工过程中会形成非常细的氧化物颗粒,这些氧化物颗粒通常为fcc Y2O3相,具有薄的盘形形态,并与有序的FeAl基体部分相干。该材料在测试温度下显示出优异的蠕变强度,这可能与氧化物颗粒是阻碍位错运动的障碍有关。位错-颗粒相互作用的精确细节尚不清楚,但是建议通过位错相对容易地切割细颗粒。 ©2014 Elsevier B.V.

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