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Shaping inductor geometry for casting functionally graded composites

Slawomir Golak (Faculty of Materials Engineering and Metallurgy, Silesian University of Technology, Katowice, Poland)
Mirosław Kordos (Department of Computer Science, University of Bielsko-Biala, Bielsko-Biala, Poland)
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Abstract

Purpose

The attractiveness of functionally graded composites lies in the possibility of a gradual spatial change of their properties such as hardness, strength and wear resistance. The purpose of this paper is to discuss the use of electromagnetic buoyancy to separate the reinforcement particles during the casting process of such a composite.

Design/methodology/approach

The basic problem encountered in the process of casting composites is to obtain electromagnetic buoyancy and simultaneously to avoid a flow of the liquid metal which destroys the desired composite structure. In this paper the authors present the methodology of numerical optimization of inductor geometry in order to homogenize the electromagnetic force field distribution.

Findings

The optimization method based on searching the solution subspace created by applying knowledge of the modelled process physics proved better than the universal local optimization methods. These results were probably caused by the complex shape of the criterion function hypersurface characterized by the presence of local minima.

Practical implications

Due to their characteristics, functionally graded composites are of great interest to the automotive, aerospace and defense industries. In the case of metal matrix composites casting techniques (as the presented one) are the most effective methods of producing functionally graded materials.

Originality/value

The paper presents the optimization of a new process of casting functionally graded composites in a low-frequency alternating electromagnetic field. The process involves problems that did not occur previously in the area of electromagnetic processing of materials. The paper proposes the use of special design of inductors to homogenize the electromagnetic force field.

Keywords

Acknowledgements

This work was supported by the National Science Centre of Poland under Grant No. N508620940.

Citation

Golak, S. and Kordos, M. (2016), "Shaping inductor geometry for casting functionally graded composites", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 35 No. 1, pp. 16-26. https://doi.org/10.1108/COMPEL-10-2014-0288

Publisher

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Emerald Group Publishing Limited

Copyright © 2016, Emerald Group Publishing Limited

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