坩埚(大地测量学)
材料科学
感应炉
粒子(生态学)
追踪
冶金
复合材料
过程(计算)
计算机科学
化学
合金
海洋学
操作系统
地质学
计算化学
作者
M. Guglielmi,Egbert Baake,A. Köppen,E. Holzmann,Sebastian Herbst
标识
DOI:10.22364/mhd.59.3-4.14
摘要
Refractory metals based on niobium are progressively attracting interest in the industrial world for the production of components used in high-temperature environments. With superior thermal and mechanical properties compared to those of nickel-based superalloys, NbSi composites represent a promising alterative for the fabrication of turbine components, and they open a way to the further increase of their efficiency. But the melting process of such refractories still faces relevant technical limitations related to their high melting point, chemical reactivity and poor homogenization of the alloy. For these reasons, numerical simulations play a fundamental role in detailed analysis of their melting process. With the help of multiphysical simulations and the particle tracing method, the addition of targeted metals into the NbSi base is investigated and optimized. Table 2, Figs 6, Refs 16.
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