金属基复合材料熔体加工的物理方法:现状与展望

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING Russian Journal of Non-Ferrous Metals Pub Date : 2022-07-05 DOI:10.3103/S1067821222030038
V. B. Deev, E. S. Prusov, E. H. Ri
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引用次数: 1

摘要

本文综述了在铸造和冶金工艺条件下,利用物理方法制备金属基复合材料中熔体的已知理论和实验结果。从对铝及其合金铸造复合材料的结构和形态特征以及物理力学和操作性能的影响的角度出发,考虑了各种物理影响方法的可能性、优点和缺点。在获得金属基复合材料时,根据熔体在加工期间(熔化、浇注和结晶期间)的状态以及根据施加效应(热、电磁、空化、机械等)的物理原理,提出了一种分类并详细描述了加工熔体的物理方法。提出了熔体物理加工对铸态金属基复合材料组织和相形成过程影响的规律和机理的现代概念。从定性和定量的角度,描述了目前已知的暴露于复合材料结构的影响,特别是与颗粒润湿性、分布、分散和形态的变化以及与基体材料结构状态的变化有关的影响。在熔融和结晶过程中,利用对熔体的物理效应获得的金属基复合材料的物理、机械、操作和工艺性能的数据被系统化。展望了基于各种基体材料和增强体系的金属基复合材料(包括内源性增强、外源性增强和复合增强复合材料)的熔体物理效应方法的发展和实际应用前景。讨论了理论研究和实验开发的重点领域;揭示了利用熔体在熔融和结晶过程中的物理效应获得金属基复合材料的讨论领域和问题。在系统分析了限制物理方法在工业上广泛应用的关键问题的基础上,提出了这一方向的未来研究领域。
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Physical Methods of Processing the Melts of Metal Matrix Composites: Current State and Prospects

This review is devoted to known theoretical and experimental results in the field of using physical methods for processing melts in the preparation of metal matrix composite materials in conditions of casting and metallurgical technological processes. The possibilities, advantages, and disadvantages of various methods of physical influences are considered from the standpoint of their influence on the structural and morphological characteristics and physicomechanical and operational properties of cast composite materials based on aluminum and its alloys. A classification is presented and a detailed description of physical methods for processing melts when obtaining metal matrix composites is presented, depending on the state of the melt during the processing period (during melting, pouring, and crystallization) and according to the physical principle of imposed effects (thermal, electromagnetic, cavitation, mechanical, and others). The modern concepts of the laws and mechanisms of the influence of the processing of the melt by physical methods on the processes of structure and phase formation of metal matrix composites in the cast state are presented. From a qualitative and quantitative point of view, the currently known effects of exposure to the structure of composites are described, in particular, those associated with a change in the wettability of particles, their distribution, dispersion, and morphology, as well as with a change in the structural state of the matrix material. Data on the physicomechanical, operational, and technological properties of metal matrix composites obtained with the use of physical effects on the melt during melting and crystallization are systematized. The prospects for the development and practical application of methods of physical effects on melts in the production of metal matrix composites based on various matrix materials and reinforcement systems, including endogenously reinforced, exogenously reinforced, and complex-reinforced composite materials, are shown. Priority areas of theoretical research and experimental development are discussed; areas of discussion and issues in the field of obtaining metal matrix composites using physical effects on melts during melting and crystallization are revealed. On the basis of a systematic analysis of the key problems that limit the widespread industrial use of physical methods for processing melts, areas for future research in this direction are proposed.

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来源期刊
Russian Journal of Non-Ferrous Metals
Russian Journal of Non-Ferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.90
自引率
12.50%
发文量
59
审稿时长
3 months
期刊介绍: Russian Journal of Non-Ferrous Metals is a journal the main goal of which is to achieve new knowledge in the following topics: extraction metallurgy, hydro- and pirometallurgy, casting, plastic deformation, metallography and heat treatment, powder metallurgy and composites, self-propagating high-temperature synthesis, surface engineering and advanced protected coatings, environments, and energy capacity in non-ferrous metallurgy.
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