铸造二元合金重熔时的结构稳定性

E. I. Marukovich, V. Stetsenko, A. Stetsenko
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引用次数: 0

摘要

研究发现了铸造二元合金重熔过程中结构稳定性的纳米结构机制。该机制是由α相和β相微晶结晶中心的稳定性决定的。研究表明,这种稳定性取决于吸附的氢原子和氧原子的浓度。这些浓度越高,铸造二元合金熔体中的α相和β相微晶的结晶中心就越不稳定,反之亦然。随着铸造二元合金熔体过热时间和(或)保温时间的增加,其中吸附的氢原子和氧原子浓度也会增加。因此,铸造二元合金在重熔过程中的结构稳定性会降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural stability during remelting of foundry binary alloys
A nanostructural mechanism of structural stability during remelting of foundry binary alloys has been developed. This mechanism is determined by the stability of the centers of crystallization of microcrystals of α‑phases and β‑phases. It is shown that this stability depends on the concentration of adsorbed hydrogen and oxygen atoms. The higher these concentrations, the less stable the centers of crystallization of α‑phase and β‑phase microcrystals in melts of foundry binary alloys, and vice versa. With an increase in overheating and (or) the holding time of melts of foundry binary alloys, the concentrations of adsorbed hydrogen and oxygen atoms in them increase. As a result, structural stability decreases during the remelting of foundry binary alloys.
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