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Recrystallization process in Fe-Cr-Al oxide dispersion-strengthened alloy: Microstructural evolution and recrystallization mechanism

机译:Fe-Cr-Al氧化物弥散强化合金的再结晶过程:组织演变和再结晶机理

摘要

Mechanically alloyed iron-base oxide dispersion-strengthened (ODS) alloys are the class of advanced materials for application in heat exchangers tubing in which creep and oxidation resistance are paramount. The yttria dispersion in such alloys improves the high-temperature creep and stress rupture life. The strength is further enhanced by the development of a coarse-grained microstructure during recrystallization. Factors controlling the evolution of this desirable microstructure are explored in this work, focusing specifically on PM 2000. The results presented in terms of orientation imaging, transmission electron microscopy, and scanning electron microscopy indicate that the recrystallization process consists of two different stages. Before the coarse grain takes place, the alloy undergoes an extended recovery process followed by abnormal grain growth. The initial microstructure consisted of subgrains (submicrometer sizes) with a strong 〈110〉RD fiber texture (α fiber), which are transformed into coarse grains (mm sizes) with orientations 〈112〉RD. The aim of this study is to describe the mechanisms involved in the intermediate stages of recrystallization process from the submicrometer grain size to the abnormal grain size. © 2014 The Minerals, Metals & Materials Society.
机译:机械合金化的铁基氧化物弥散强化(ODS)合金是一类用于热交换器管道的高级材料,在这些管道中,蠕变和抗氧化性至关重要。氧化钇在此类合金中的分散提高了高温蠕变和应力断裂寿命。通过在重结晶过程中形成粗晶粒组织,进一步提高了强度。在这项工作中,主要针对PM 2000,探索了控制这种理想的组织演变的因素。在取向成像,透射电子显微镜和扫描电子显微镜方面给出的结果表明,重结晶过程包括两个不同的阶段。在发生粗大晶粒之前,合金会经历延长的恢复过程,随后出现异常的晶粒长大。最初的微观结构由具有强〈110〉 RD纤维织构(α纤维)的亚晶粒(亚微米尺寸)组成,这些晶粒转变为取向为〈112〉 RD的粗晶粒(mm尺寸)。这项研究的目的是描述从亚微米晶粒尺寸到异常晶粒尺寸的再结晶过程中间阶段所涉及的机制。 ©2014矿产,金属与材料学会。

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