Study on the Potential of New Load-Carrying Capacity Descriptions for the Service Life Calculations of Gears

Author:

Vietze Daniel1,Pellkofer Josef1,Stahl Karsten1ORCID

Affiliation:

1. Gear Research Center (FZG), TUM School of Engineering and Design, Technical University of Munich, Boltzmannstraße 15, D-85748 Garching near Munich, Germany

Abstract

Calculating the service life of gears under variable loads requires a description of the load-carrying capacity. The current standard for this is the use of the S/N curve. International standards such as ISO 6336 stipulate the use of this approach for the calculation of the service of gears under variable loads. In this paper, five new approaches are developed and evaluated to describe the load-carrying capacity of gears in the load range of finite life. Four methods are based on machine learning, and one uses mathematical regression. To validate the new approaches, the results of an experimental study investigating the service life of gears under variable loads are presented. These results form the basis for the conducted study, which compares the five new methods with the existing approach. The comparison focuses on the ability of the load-carrying capacity descriptions to provide an accurate calculation of the service life and to reduce scattering as much as possible. The results of the study show significant potential for the new methods, especially the one based on a neural network.

Funder

German Research Foundation e.V.

Publisher

MDPI AG

Reference46 articles.

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2. Basquin, O. (1910, January 8). The exponential law of endurance tests. Proceedings of the Thirteenth Annual Meeting, Trenton, NJ, USA.

3. (2019). Calculation of Load Capacity of Spur and Helical Gears—Part 1: Basic Principles, Introduction and General Influence Factors (Standard No. ISO 6336-1:2019-11).

4. (2019). Calculation of Load Capacity of Spur and Helical Gears—Part 6: Calculation of Service Life under Variable Load (Standard No. ISO 6336-6:2019-11).

5. An intelligent bearing fault diagnosis framework: One-dimensional improved self-attention-enhanced CNN and empirical wavelet transform;Dong;Nonlinear Dyn.,2024

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