镁锰合金的改性机理

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

摘要

研究表明,在镁锰合金凝固过程中,主要改性相不能作为α相微晶的结晶中心。研究表明,吸附氢是镁锰合金铸件结构的一个改变元素。过热对镁锰合金铸件进行改性的机理是,由于液态镁锰合金中基本镁和锰纳米晶体的解吸过程占主导地位,吸附氢的浓度显著下降。这些合金的主要改性相的改性机制包括通过显著降低溶解氢的浓度来显著降低熔体中吸附氢的浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms of modification of magnesium– manganese alloys
It is shown that the main modifying phases cannot serve as centers of crystallization of α‑phase microcrystals during solidification of magnesium‑manganese alloys.The superheating modification of these alloys is an adsorption‑nanostructural process. It is shown that adsorbed hydrogen acts as a modifying element of the structure of castings of magnesium‑manganese alloys. The mechanism of their modification by overheating consists of a significant decrease in the concentration of adsorbed hydrogen due to the predominance of its desorption processes from elementary magnesium and manganese nanocrystals in liquid magnesiummanganese alloys. The mechanism of modification of the main modifying phases of these alloys consists of a significant decrease in the concentration of adsorbed hydrogen in the melts through a significant decrease in the concentration of dissolved hydrogen.
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