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Chapter

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Title

Improvement of the Gear Shaping Effectiveness for Bimetal Gears of Internal Gearing with a Friction Coating

Authors

[ 1 ] Instytut Technologii Mechanicznej, Wydział Inżynierii Mechanicznej, Politechnika Poznańska | [ P ] employee

Scientific discipline (Law 2.0)

[2.9] Mechanical engineering

Year of publication

2021

Chapter type

chapter in monograph / paper

Publication language

english

Keywords
EN
  • bimetal gears
  • gear shaping
  • friction discs
  • vibrations
Abstract

EN This paper presents an experimental study of the gear shaping process of the internal gearing with a friction coating. It is known that this process is characterized by the occurrence of significant vibrations, the decrease in the stability of the cutting tool, and the ambiguity of the technological parameters. These factors limit the ability to process bimetallic discs with friction coatings on gear-shaping machines. Therefore, the dependence of the amplitude of oscillations of the ram and the table with the fixture for clamping the package of parts on different machining modes are investigated in the paper. The experiment was performed on a gear-shaping machine model TOS OHO 50 and using an accelerometer 7290A-2. To register the vibration acceleration, the Information Collection System “National instruments mod. NI-9234” was used. Also, during the experiment, the analysis of the period of stability of the cutting tool depending on the number of double runs of the shaper-type cutter and circular feed. The tool’s stability was analyzed by the chamfer wear on the rear surface, which was checked by a microscope. According to the experiment results, the optimal processing mode, according to the tool’s maximum productivity and stability, is proposed in the paper. The application of the proposed processing mode reduces the self-excited vibrations of the technological system, increases the cutting tool’s stability, stabilizes the surface roughness parameters, and increases the gear-shaping process’s efficiency of the package of friction discs.

Date of online publication

26.05.2021

Pages (from - to)

444 - 452

DOI

10.1007/978-3-030-77719-7_44

URL

https://link.springer.com/chapter/10.1007/978-3-030-77719-7_44

Book

Advances in Design, Simulation and Manufacturing IV : Proceedings of the 4th International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, DSMIE-2021, June 8–11, 2021, Lviv, Ukraine – Volume 1: Manufacturing and Materials Engineering

Presented on

4th International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, DSMIE-2021, 8-11.06.2021, Lviv, Ukraine

Ministry points / chapter

20

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