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Study of solidification pathway of a MoSiBTiC alloy by optical thermal analysis and in-situ observation with electromagnetic levitation

机译:通过光学热分析和电磁悬浮原位观察研究MoSiBTiC合金的凝固途径

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摘要

MoSiBTiC alloys are promising candidates for next-generation ultrahigh-temperature materials. However, the phase diagram of these alloys has been unknown. We have developed an ultrahigh-temperature thermal analyser based on blackbody radiation that can be used to analyse the melting and solidification of the alloy 67.5Mo–5Si–10B–8.75Ti–8.75 C (mol%). Furthermore, electromagnetic levitation (EML) was used for in-situ observation of solidification and microstructural study of the alloy. On the basis of the results, the following solidification pathway is proposed: Mo solid solution (Moss) begins to crystallize out as a primary phase at 1955 °C (2228 K) from a liquid state, which is followed by a (Moss+TiC) eutectic reaction starting at 1900 °C (2173 K). Molybdenum boride (Mo2B) phase precipitates from the liquid after the eutectic reaction; however, the Mo2B phase may react with the remaining liquid to form Moss and Mo5SiB2 (T2) as solidification proceeds. In addition, T2 also precipitates as a single phase from the liquid. The remaining liquid reaches the (Moss + T2 + TiC) ternary eutectic point at 1880 °C (2153 K), and the (Moss + T2 + Mo2C) eutectic reaction finally occurs at 1720 °C (1993 K). This completes the solidification of the MoSiBTiC alloy.
机译:MoSiBTiC合金是下一代超高温材料的有希望的候选者。但是,这些合金的相图是未知的。我们开发了基于黑体辐射的超高温热分析仪,可用于分析67.5Mo–5Si–10B–8.75Ti–8.75 C合金的熔融和凝固(摩尔%)。此外,电磁悬浮法(EML)用于合金的凝固观察和显微组织研究。根据结果​​,提出了以下固化途径:Mo固溶体(Moss)在1955°C(2228 K)时从液态开始结晶为主相,随后为(Moss + TiC )从1900 C(2173 K)开始的共晶反应。共晶反应后,硼化钼(Mo2B)相从液体中沉淀出来;但是,随着固化的进行,Mo2B相可能与剩余的液体反应形成Moss和Mo5SiB2(T2)。另外,T2也作为单相从液体中沉淀出来。剩余的液体在1880 C(2153 K)达到(Moss + T2 + TiC)三元共晶点,(Moss + T2 + Mo2C)共晶反应最终在1720°C(1993 K)发生。这样就完成了MoSiBTiC合金的凝固。

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