An improvement on helicopter transmission performance through use of high contact ratio spur gears with suitable profile modification design

Author:

Yildirim N1,Gasparini G2,Sartori S2

Affiliation:

1. Department of Mechanical Engineering, University of Gaziantep, 27310 Gaziantep, Turkey

2. Transmission Systems Design and Development Department, AgustaWestland, Cascina Costa — Samarate (VA), Italy

Abstract

This is a design/development study on helicopter transmission that had improved performance in terms of vibration and noise behaviour, in compliance with surface durability requirement, compared with what was achievable with previous designs. Different spur gears of both low and high contact ratios (HCRs) have previously been designed and tested in helicopter transmissions with different profile modifications but with limited performance improvement. The desired performance, however, was achieved through the use of a suitable profile modification for the HCR spur gears in mesh. Profile modification type of ‘double relief’ was applied for the first time to two sets of helicopter transmission spur gears, both with HCRs. Possibility of corner contact was avoided while achieving a relatively low value of peak-to-peak transmission error in ‘full load range of gears operating conditions’, which was not usually satisfied by conventional profile designs. With the new profile modification design, a measured noise level reduction of 7—11 dBA and a casing vibration reduction of two to four times were achieved at teeth meshing frequency. The new design philosophy presented in this article is pending worldwide patent by the authors.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

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2. Load share model based gear loss factor prediction in high contact ratio spur gear drive;Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology;2022-06-20

3. Tooth contact analysis of a non-involute rack and pinion system for off-shore application;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2022-04-18

4. Classification of Design Methodologies to Minimize Vibrations in Gears and Bearings in the 21st Century: A Review;Machines;2021-09-25

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