A differential evolution algorithm for tooth profile optimization with respect to balancing specific sliding coefficients of involute cylindrical spur and helical gears

Author:

Abderazek Hammoudi1,Ferhat Djeddou1,Atanasovska Ivana2,Boualem Keskes1

Affiliation:

1. Applied Precision Mechanics Laboratory, Institute of Optics and Precision Mechanics, Setif -1- University, Setif, Algeria

2. Innovation Center, Faculty of Mechanical Engineering, University of Belgrade, Belgrade, Serbia

Abstract

Profile shift has an immense effect on the sliding, load capacity, and stability of involute cylindrical gears. Available standards such as ISO/DIS 6336 and BS 436 DIN/3990 currently give the recommendation for the selection of profile shift coefficients. It is, however, very approximate and usually given in the form of implicit graphs or charts. In this article, the optimal selection values of profile shift coefficients for cylindrical involute spur and helical gears are described, using a differential evolution algorithm. The optimization procedure is developed specifically for exact balancing specific sliding coefficients at extremes of contact path and account for gear design constraints. The obtained results are compared with those of standards and research of other authors. They demonstrate the effectiveness and robustness of the applied method. A substantial improvement in balancing specific sliding coefficients is found in this work.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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