Influence of Tooth Profile Deviations on Helical Gear Wear

Author:

Kahraman A.1,Bajpai P.2,Anderson N. E.3

Affiliation:

1. Department of Mechanical Engineering, Ohio State University, 206 W. 18th Avenue, Columbus, OH 43210

2. University of Toledo, Toledo, OH 43606-3390

3. General Motors Powertrain

Abstract

In this study, a surface wear prediction model for helical gears pairs is employed to investigate the influence of tooth profile deviations in the form of intentional tooth profile modifications or manufacturing errors on gear tooth surface wear. The wear model combines a finite-element-based gear contact mechanics model that predicts contact pressures, a sliding distance computation algorithm, and Archard’s wear formulation to predict wear of the contacting tooth surfaces. Typical helical gear tooth modifications are parameterized by an involute crown, a lead crown, and an involute slope. The influence of these parameters on surface wear are studied within typical tolerance ranges achievable using hob/shave process. The results indicate that wear is related to the combined modification parameters of a gear pair rather than individual gear parameters. At the end, a design formula is proposed that relates the mismatch of contacting surface slopes to the maximum initial wear rate.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference14 articles.

1. Analysis of the Effects of Surface Pitting and Wear on the Vibration of a Gear Transmission System;Choy;Tribol. Int.

2. Robust Noise Characteristics of Gears Due to their Applications, Manufacturing Errors and Wear;Mackaldener

3. The Effect of Tooth Wear on the Vibration Spectrum of a Spur Gear Pair;Kuang;ASME J. Vibr. Acoust.

4. Effect of Automatic Transmission Fluid on Pitting Fatigue Strength of Carborized Gears;Chen

5. A Deterministic Elastohydrodynamic Lubrication Model of High-Speed Transmission Components;Cioc;Tribol. Trans.

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