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首页> 外文期刊>Journal of Materials Science >Study of the containerless undercooling of Ti-Ce immiscible alloys
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Study of the containerless undercooling of Ti-Ce immiscible alloys

机译:Ti-Ce不混溶合金的无容器过冷研究

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Ti-Ce immiscible alloys of compositions across the miscibility gap were containerlessly processed in both a low-gravity and a unit-gravity environment. Although undercooling of the single-phase liquid into the miscibility gap could not be observed, undercooling did occur across the miscibility gap for the separated liquid Ti-rich phase. The low gravity, quiescent environment favored higher undercooling over the unit-gravity samples. Every undercooled sample had massive separation of the liquid phases. Metallurgical analysis of samples undercooled in unit-gravity showed signs of vigorous convective stirring and shearing of the L-1 Ti-liquid by the applied levitation electromagnetic field. In low-gravity processed samples, the L-1 liquid formed a near-concentric sphere within a Ce shell with some residual smaller spherical particles dispersed throughout the Ce. This configuration is predicted from wetting theory and from Marangoni separation. Plots of both the melting and solidification temperatures indicate that the monotectic temperature is 1831 +/- 12 degreesK rather than the 1723 degreesK as reported in the literature. From chemical and diffraction analysis, the solubility of Ce in the Ti-rich phase was found to be extended; also, some cerium oxide precipitates formed but no perceptible dissolved oxygen within the Ce or Ti phases was found which indicates that the higher monotectic temperature reported here is probably not an oxygen effect. (C) 2001 Kluwer Academic Publishers. [References: 26]
机译:在低重力和单位重力环境下,均采用无容器方式加工了跨可混性间隙的Ti-Ce不混溶合金。尽管无法观察到单相液体过冷到混溶间隙中,但是对于分离的富Ti液相,在整个混溶间隙中确实发生过冷。低重力的静态环境比单位重力的样品具有更高的过冷度。每个过冷的样品都有大量的液相分离。单位重力下过冷的样品的冶金分析表明,通过施加悬浮电磁场,剧烈对流搅拌和剪切了L-1 Ti液体。在低重力处理的样品中,L-1液体在Ce壳内形成了一个近同心球体,一些残留的较小球形颗粒分散在整个Ce中。该构型是根据润湿理论和Marangoni分离预测的。熔化温度和凝固温度的曲线图表明,单晶温度为1831 +/- 12度,而不是文献报道的1723度。通过化学和衍射分析,发现铈在富钛相中的溶解度得到了扩展。同样,一些氧化铈沉淀形成,但在Ce或Ti相中未发现明显的溶解氧,这表明此处报道的较高的单晶温度可能不是氧效应。 (C)2001 Kluwer学术出版社。 [参考:26]

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