Physical Regularities for Cellular Precipitation of Co-, Cu-, and Pb-Based Supersaturated Solid Solutions

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
M. Savchuk, O. Filatov, O. Shmatko
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引用次数: 0

Abstract

The decomposition of supersaturated solid solutions through the cellular mechanism is considered in terms of the physical regularities of this phenomenon. The general characteristics of this process are described. The mechanisms of nucleation and subsequent cell growth, as well as kinetic parameters of processes, are partially described. The influences of some external factors on the cellular precipitation process and its stages are characterized. Particularly, the effects of annealing temperature and a third element on the cellular precipitation process are studied.
钴、铜和铅基过饱和固溶体细胞沉淀的物理规律
从这种现象的物理规律出发,考虑过饱和固溶体通过细胞机制的分解。介绍了该工艺的一般特点。成核的机制和随后的细胞生长,以及动力学参数的过程,部分描述。分析了外界因素对胞状降水过程及其阶段的影响。特别地,研究了退火温度和第三元素对胞状沉淀过程的影响。
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来源期刊
CiteScore
3.10
自引率
18.80%
发文量
21
审稿时长
13 weeks
期刊介绍: The review journal Uspehi Fiziki Metallov (abbreviated key-title: Usp. Fiz. Met.) was founded in 2000. In 2018, the journal officially obtained parallel title Progress in Physics of Metals (abbreviated title — Prog. Phys. Met.). The journal publishes articles (that has not been published nowhere earlier and are not being considered for publication elsewhere) comprising reviews of experimental and theoretical results in physics and technology of metals, alloys, compounds, and materials that possess metallic properties; reviews on monographs, information about conferences, seminars; data on the history of metal physics; advertising of new technologies, materials and devices. Scope of the Journal: Electronic Structure, Electrical, Magnetic and Optical Properties; Interactions of Radiation and Particles with Solids and Liquids; Structure and Properties of Amorphous Solids and Liquids; Defects and Dynamics of Crystal Structure; Mechanical, Thermal and Kinetic Properties; Phase Equilibria and Transformations; Interphase Boundaries, Metal Surfaces and Films; Structure and Properties of Nanoscale and Mesoscopic Materials; Treatment of Metallic Materials and Its Effects on Microstructure and Properties.
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