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Re-Melting Nb–Si-Based Ultrahigh-Temperature Alloys in Ceramic Mold Shells

机译:在陶瓷模具壳中重新熔化基于NB-SI的超高温合金

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摘要

In furnaces with different heating elements, Nb−Si based ultrahigh-temperature alloy rods were re-melted in pure yttria mold shells and zirconia face-coat mold shells at 1850 °C for 30 min. The results evidenced that in the furnace with a tungsten heating element, the microstructure of the re-melted alloy became coarser, and the composition varied depending on the type of mold shell. Although the interface reaction layer between the re-melted alloy and the zirconia face-coat mold shell was much thicker, the deformability of the mold shell and the sand burning phenomenon of the alloy inside it were improved and ameliorated, respectively. However, after being re-melted in the furnace with a graphite heating element, the misrun phenomenon occurred in both specimens. Both re-melted alloys inside the mold shells were divided by a gap into an internal and an external part, with totally different microstructures and compositions. No reaction layer emerged at the interface between the re-melted alloy and the mold shells. Instead, infiltration zones arose in the mold shells adjacent to the interface.
机译:在具有不同的加热元件炉,铌-Si系超高温合金棒被重新熔化在1850中纯氧化钇模具壳和氧化锆面涂层模具壳℃下30分钟。结果证明,在用钨加热元件的炉中,再熔融的合金的微观结构变得粗糙的,并且根据模具壳的类型的组合物而变化。虽然重新熔化合金和氧化锆面涂层模壳之间的界面反应层是厚得多,模具外壳的可变形性和它里面的合金的砂燃烧现象得到改善,减轻,分别。然而,作为在之后用石墨加热元件的炉重新熔化时,浇不足现象发生在两个试样。模具壳内两个重新熔化合金是用间隙分为内部和外部部分,具有完全不同的微观结构和组合物。没有反应层出现在再熔化合金和模壳之间的界面。取而代之的是,渗透区产生于相邻的界面处的模壳。

著录项

  • 作者

    Yin Wang; Xiping Guo;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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