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Formation of nanoscale complex oxide particles in mechanically alloyed ferritic steel

机译:机械合金化铁素体钢中纳米级复合氧化物颗粒的形成

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摘要

Oxide-dispersion-strengthened (ODS) ferritic steel incorporating nanoscale oxide particles was produced by mechanical alloying, and the complex oxide particles, comprised of titanium and yttrium, characterized by high-resolution transmission electron microscopy (HRTEM) and characteristic X-ray nano-analyses. The interface between the ferritic matrix and the major Ti-Y complex oxide was incoherent. From HRTEM and characteristic X-ray nano-analyses, plus the extremely limited literature data on ODS ferritic steels, it was determined that the most stable complex oxide was cubic Y_2Ti_2O_7, which formed by a spontaneous reaction between nano-sized ceramics with a low solubility limit in the metal.
机译:通过机械合金化制备了包含纳米级氧化物颗粒的氧化物弥散强化(ODS)铁素体钢,并且该复合氧化物颗粒由钛和钇组成,具有高分辨率透射电子显微镜(HRTEM)和特征性X射线纳米级特征。分析。铁素体基体和主要的Ti-Y复合氧化物之间的界面不连贯。根据HRTEM和特征X射线纳米分析,再加上有关ODS铁素体钢的文献资料极为有限,可以确定最稳定的复合氧化物是立方Y_2Ti_2O_7,这是由低溶解度的纳米尺寸陶瓷之间的自发反应形成的限制在金属中。

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