强脉冲电子束对Al-Si合金结构色散的影响

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING
S. Konovalov, V. Gromov, D. Zaguliyaev, Y. Ivanov, A. Semin, J. Rubannikova
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引用次数: 2

摘要

采用现代物理材料科学方法(光学显微镜、扫描电镜和透射电镜)分析了经电子束处理的亚共晶Al-Si合金(silumin)的结构相态、第二相夹杂物形貌和缺陷亚结构。电子束处理的参数为:能量密度25 ~ 35 J/cm,束长150 μs,脉冲数为3,脉冲重复率为0.3 Hz,残余气体压力(氩气)0.02 Pa。表面辐照导致表层熔化,边界夹杂溶解,形成亚微米级高速胞状结晶的条状结构,第二相纳米粒子的反复析出。随着离辐照表面距离的增加,晶胞周围有一层含准平衡形状的第二相夹杂物。说明了铝硅合金在电子束加工过程中组织的全球化过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion of Al-Si Alloy Structure by Intensive Pulsed Electron Beam
By the method of modern physical material science (optic microscopy scanning and transmission electron microscopy) the analysis of structural phase states, the morphology of the second phase inclusions and defect substructure of Al-Si alloy (silumin) of hypoeutectic composition, subjected to electron beam processing was done with the following parameters: energy density 25-35 J/cm, beam length 150 μs, pulse number – 3, pulse repetition rate – 0.3 Hz, pressure of residual gas (argon) 0.02 Pa. The surface irradiation results in the melting of the surface layer, the dissolution of boundary inclusions, the stricture formation of high speed cellular crystallization of submicron sizes, the repeated precipitation of the second phase nanodimentional particles. With the increased distance from the irradiation surface the layer containing the second phase inclusions of quasi-equilibrium shape along with the crystallization cells was revealed. It is indicative of the processes of Al-Si alloy structure globalization on electron beam processing.
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来源期刊
Archives of Foundry Engineering
Archives of Foundry Engineering METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: Thematic scope includes scientific issues of foundry industry: Theoretical Aspects of Casting Processes, Innovative Foundry Technologies and Materials, Foundry Processes Computer Aiding, Mechanization, Automation and Robotics in Foundry, Transport Systems in Foundry, Castings Quality Management, Environmental Protection. Why subscribe and read
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