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High temperature creep behaviour of an FeAl intermetallic strengthened by nanoscale oxide particles

机译:纳米氧化物颗粒增强FeAl金属间化合物的高温蠕变行为

摘要

The creep behaviour of an FeAl intermetallic strengthened by nanosized oxide particles has been examined at temperatures of 700-825 °C. For all temperatures the strain rate shows a power law dependence on the applied stress. At the lowest temperature and with the highest stresses there is evidence of a threshold stress produced by the difficulty of overcoming the particle barriers, while for higher temperatures as well as at low stresses there is no threshold stress and creep appears to be controlled by general climb. The fine oxide particles produce good strengthening at low temperatures but are more readily overcome at high temperatures due to their very small size and limited attractive relaxation force. Despite such fall in creep strength, this material remains one of the strongest iron aluminides to the temperature range evaluated. © 2007 Elsevier Ltd. All rights reserved.
机译:已经在700-825°C的温度下检查了由纳米氧化物颗粒增强的FeAl金属间化合物的蠕变行为。在所有温度下,应变率都显示出幂律,取决于所施加的应力。在最低的温度和最高的应力下,有证据表明由于难以克服颗粒屏障而产生了阈值应力,而对于较高的温度以及在较低的应力下,则没有阈值应力,蠕变似乎受一般爬升控制。细氧化物颗粒在低温下产生良好的增强作用,但由于其很小的尺寸和有限的吸引力松弛力而在高温下更容易克服。尽管蠕变强度下降,但该材料仍是评估温度范围内最强的铝化铁之一。 ©2007 ElsevierLtd。保留所有权利。

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