Crystallization features of casting alloys

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

Abstract

It has been shown that elementary crystal lattices of basic phases and oxides of casting alloys do not satisfy the principle of structural and dimensional correspondence. Formation of crystallization centers during solidification of casting alloys is a nanostructured process. The main demodifying element in melt crystallization is adsorbed hydrogen. It prevents the integration of nanocrystals into the nucleus of crystallization of the main phases of casting alloys. When the melt overheats, adsorption and desorption of hydrogen atoms occur. The predominance of one of these processes explains the features of crystallization of cast‑ ingalloys. Prior to critical superheating of the melt, the adsorption of hydrogen atoms prevails. As a result, molds with an unmodified structure are formed. When the melt overheats above the critical one, the process of desorption of hydrogen atoms prevails. As a result, molds with a modified structure are formed.
铸造合金的结晶特征
结果表明,铸造合金的基本相和氧化物的基本晶格不满足结构和尺寸对应的原则。铸造合金凝固过程中结晶中心的形成是一个纳米结构的过程。熔体结晶中主要的脱臭元素是吸附的氢。它可以防止纳米晶进入铸造合金主相的结晶核中。当熔体过热时,就会发生氢原子的吸附和解吸。其中一种过程的优势解释了铸造合金的结晶特征。在熔体临界过热之前,主要是氢原子的吸附。因此,形成了具有未修改结构的模具。当熔体过热超过临界温度时,氢原子的解吸过程就开始了。结果,形成了具有修改结构的模具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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