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Prediction of the hardness of hardened specimens with a neural network

Matej Babič, Peter Kokol, I. Belič, P. Panjan, Miha Kovačić, J. Balič, Timotej Verbovšek

Year
2014
Citations
5

Abstract

In this article we describe the methods of intelligent systems to predict the hardness of hardened specimens. We use the mathematical method of fractal geometry in laser techniques. To optimize the structure and properties of tool steel, it is necessary to take into account the effect of the self-organization of a dissipative structure with fractal properties at a load. Fractal material science researches the relation between the parameters of fractal structures and the dissipative properties of tool steel. This paper describes an application of the fractal dimension in the robot laser hardening of specimens. By using fractal dimensions, the changes in the structure can be determined because the fractal dimension is an indicator of the complexity of the sample forms. The tool steel was hardened with different speeds and at different temperatures. The effect of the parameters of robot cells on the material was better understood by researching the fractal dimensions of the microstructures of hardened specimens. With an intelligent system the productivity of the process of laser hardening was increased because the time of the process was decreased and the topographical property of the material was increased.

Keywords

Materials scienceDissipative systemFractalFractal dimensionHardening (computing)Hardened steelArtificial neural networkFractal analysisLaserBiological system

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