Abstract
Improving accuracy ofthe gear tooth surface has become an important challenge, because the toothsurface accuracy greatly influences vibration of gears. However, for the spiralbevel gear, the tooth surface accuracy is considered to be very difficult toevaluate because the geometrical theory is difficult. Generally, the managementof tooth surface accuracy has conventionally been substituted by the toothsurface contact evaluation with red lead, which is a kind of paint. However,the results of visual examinations are too subjective. We therefore focused onthe infrared ray imagery to investigate the gear tooth meshing. In this research,a high response infrared thermography was used to estimate the tooth contact ofa hypoid gear under running conditions. Specifically, we looked at the increasein temperature on the tooth surface caused by gear meshing. The results clearlyshowed that the temperature was affected by load, sliding speed between toothsurfaces, and the average peripheral speed of tooth surface. We also proposedan equation that predicts tooth surface temperature rise and showed its utility.Thus, the proposed method effectively evaluates the tooth surface accuracy ofhypoid gear.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference12 articles.
1. Kazuo Yoshikawa, Hirofumi Tani, Ichiro Tarutani, Akira Suzuki, Hiroki Maki, Yasushi Ueda, Measurement of Helical Gear Transmission Error and Improvement of Analytical Method, Journal of JSME, Vol. 63, No. 69 (1997), pp.1775-1782. (in Japanese).
2. J.H. Kuang, A.D. Lin, The Effect of Tooth Wear on the Vibration Spectrum of a Spur Gear Pair, Transactions of the ASME(Journal of Vibration and Acoustics), Vol. 123 (2001), pp.311-317.
3. Mitsuhiro Umeyama, Masana Kato, Katsumi Inoue, Transmission Error of a Helical Gear Pair with Modified Tooth Surface: 1st Report, Actual Contact Ratio and the Effects of the Load on the Transmission Error, Journal of JSME, Vol. 62, No. 603 (1996).
4. Kazumasa Kawasaki, Hirokazu Michiwaki, Kentarou Suzuki, Transmission Error Analysis of Spiral Bevel Gears in Gleason System, Journal of JSME, Vol. 65, No. 639 (1999), pp.4476-4483. (in Japanese).
5. Susumu Mishima, Akira Yoshida, Hirofumi Sentoku, Design on Spiral Bevel Gear Flank for Forging Die: Part 1, Measurement and Evaluation Methods of Tooth Flank, Design Engineering, Vol. 38, No. 1 (2003), pp.26-32. (in Japanese).
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Thermal Failure Analysis of Gear Transmission System;Journal of Failure Analysis and Prevention;2024-02-05