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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effects of processing condition on the microstructural and tensile properties of 14Cr-based oxide dispersion strengthened alloys
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Effects of processing condition on the microstructural and tensile properties of 14Cr-based oxide dispersion strengthened alloys

机译:加工条件对14Cr基氧化物弥散强化合金显微组织和拉伸性能的影响

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摘要

Eight different oxide dispersion strengthened (ODS) steels were manufactured to investigate the influence of several processing parameters including milling temperature, rotation speed, and consolidation temperature. Microstructural evolution and resulting mechanical properties were then characterized for the different manufacturing processes. As milling temperature decreases, microstructures become finer and room temperature tensile strength increases. Lowering the consolidation temperature induces an increase in tensile strength with a decrease of ductility. The microstructure becomes homogeneous as the tensile strength increases when the milling speed increases from 100 rpm to 250 rpm. However, the improvement seems to be less effective than the adoption of a cryomilling technique. Porosity development was considerably dependent not only on consolidation condition but also on powder quality after mechanical alloying.
机译:制造了八种不同的氧化物弥散强化(ODS)钢,以研究多个加工参数(包括铣削温度,转速和固结温度)的影响。然后表征了不同制造工艺的微观结构演变和所得的机械性能。随着研磨温度的降低,微观结构会变得更细,室温下的拉伸强度也会提高。降低固结温度会导致拉伸强度增加,而延展性降低。当研磨速度从100 rpm增加到250 rpm时,随着抗张强度的增加,微观结构变得均匀。但是,这种改进似乎不如采用低温铣削技术有效。气孔的形成不仅很大程度上取决于固结条件,而且还取决于机械合金化后的粉末质量。

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