Improving Productivity of Misaligned Boring of Hydraulic Cylinder Holes with a Rotating Cutter Block Based on Computer Simulation Results

Author:

Tolmacheva Tatyana A.1,Kuts Vadim V.1,Malneva Yuliya A.1

Affiliation:

1. Southwest State University

Abstract

The analysis of existing processing methods was carried out. A series of virtual experiments was performed; based on their results dependences of the height of residual ridges, the temperature on the workpiece surface and the temperature in the cutting zone on the parameters of the processing mode when boring internal holes with a rotating cutter block were constructed based on the results of virtual computer simulation. An optimization model of the boring process was built. The objective function was received. Within the optimization model framework, solutions were obtained that allow, at the highest value of axial feed, to ensure the required surface quality and avoid changes in the physical and mechanical properties of the material.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference8 articles.

1. Vanin I.V., Grechishnikov V.A., Kuts V.V., Razumov M.S., Grechukhin A.N. (2018). Investigation of forming the inner cylindrical surfaces of long thin-walled parts by planetary boring. Bulletin of MGTU Stankin No. 3 (46), pp.30-34.

2. Lashnev S.I., Borisov A.N., Emelyanov S.G. (1997). Geometric theory of surface formation by cutting tools: Monograph, Kursk State Technical University, Kursk, (1997).

3. Vasin, S.A. (2001). Cutting materials. Thermomechanical approach to the system of interconnections during cutting. MSTU named after Bauman, Moscow.

4. Grechishnikov V.A., Kuts V.V., Razumov M.S. (2017). Determination of error in the shape of a part when shaping by planetary mechanism using the methods of geometric theory of cutting. STIN, No. 4, pp.24-26.

5. Kuts V.V. (2012). Methodology for pre-design research of specialized metal-cutting systems: Abstract of diss. for Doctor of Technical Sciences: 05.02.07. Kuts Vadim Vasilievich, South-Western State University, Kursk, (2012).

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