Journal of Production Engineering

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Vol. 9 No. 9 (1992): Former "Proceedings of the Institute of Production Engineering"
Original Research Article

Determination of the tool - life function of one teeth hobbing in dependence on cutting condition

Bogdan Sovilj
University of Novi Sad, Faculty of Technical Sciences, Departman for Production Engineering, Trg Dositeja Obradovica 6, 21000 Novi Sad, Serbia
Mirko Vukeljić
Fabrika menjača Sarejevo
Vlastimir Pejić
University of Novi Sad, Faculty of Technical Sciences, Departman for Production Engineering, Trg Dositeja Obradovica 6, 21000 Novi Sad, Serbia
Dragan Tomić
University of Novi Sad, Faculty of Technical Sciences, Departman for Production Engineering, Trg Dositeja Obradovica 6, 21000 Novi Sad, Serbia
Miodrag Stević
University of Novi Sad, Faculty of Technical Sciences, Departman for Production Engineering, Trg Dositeja Obradovica 6, 21000 Novi Sad, Serbia

Published 1992-12-01

abstract views: 5 // FULL TEXT ARTICLE (PDF): 3


Keywords

  • productivity,
  • geometric accuracy,
  • quality,
  • gear teeth

How to Cite

Sovilj, B., Vukeljić, M., Pejić, V., Tomić, D., & Stević, M. (1992). Determination of the tool - life function of one teeth hobbing in dependence on cutting condition. Journal of Production Engineering, 9(9), 135–144. https://doi.org/10.24867/JPE-1992-09-135

Abstract

The hobbing process is one of the most critical operations in the machining chain because it significantly impacts productivity, final geometric accuracy, and the quality of machined surfaces on gear teeth. Hobbing is a complex process with a wide range of factors and process parameters that are crucial for determining optimal processing conditions. Achieving the best treatment outcomes relies on establishing reliable mathematical relationships among specific parameters and analyzing the technical-economic aspects of process quality. In the field of technico-economic optimization, one of the main challenges is dealing with the constraints and reliability of the process. This challenge is particularly pronounced in gear hobbing due to the frequent absence of certain key functions, as they are challenging to identify through experiments under real production conditions. In this paper, the authors have experimentally determined the stability function of gear hobbing, a primary state function, based on cutting conditions, through an analysis of the intricate hobbing process using mathematical design of experiments.

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