Dispersion of Flatness of the Machined Surface and Optimization of Cutting Conditions when Performing a Real Experiment of Face Milling of High-Hardness Steel

Author:

Sedinin Igor1,Makarov Vladimir1,Pesin Michael V.1,Nikitin Sergey1

Affiliation:

1. Perm National Research Polytechnic University

Abstract

To study the face milling of hardened steel, the paper considers the chemical composition of the processed material, as well as metal-cutting, measuring equipment and tools. A full factorial experiment of face milling was carried out by the method of mathematical planning and matrices of levels of variation and planning of independent variables were compiled. The flatness of the samples was measured and the causes of plastic deformation were determined. To find an adequate mathematical model of flatness, a regression analysis was performed, and the correlation analysis revealed the closeness of the relationship between the variables under one-and two-factor influence on the response function. The hypersurfaces and lines of the function levels are projected, which made it possible to determine the optimal and effective cutting conditions graphically and analytically.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference18 articles.

1. V.T. Babkin, A.A. Zaychenko, V.V. Aleksandrov et al., Tightness of fixed connections hydraulic systems, Mechanical engineering, Moscow, (1977).

2. A.S. Zubchenko, M.M. Koloskov, Yu.V. Kashirsky et al., in: A.S. Zubchenko (Eds.), Grade list of steels and alloys, Mechanical engineering, Moscow, (2003).

3. Information on http://www.emco-world.com/uploads/tx_commerce/Milling_EMCOMILL_ E350-1200_EN_01.pdf.

4. Information on https://www.renishaw.com/en/omp40-2-optical-transmission-probe--7992.

5. Information on https://www.zeiss.co.in/metrology/products/systems/coordinate-measuring-machines/bridge-type-cmms/contura-g2.html.

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