Research on Asymmetric Gear Stiffness

2026-99-0332

8/14/2026

Authors
Abstract
Content
To meet the need for optimizing the dynamic performance of asymmetric gear transmissions operating under high-speed and heavy-load conditions, this study presents a refined stiffness modeling approach. A tooth-surface contact stiffness model is formulated based on Hertzian contact theory. By integrating the energy method, a coupled stiffness model is established that incorporates bending, shear, axial compression, and foundation stiffness components. Stable curves depicting the variation of mesh stiffness with the path of contact are subsequently derived by leveraging the principle of stiffness superposition. The findings demonstrate that the proposed mathematical model accurately represents the stiffness behavior of asymmetric gears as governed by the changing contact length, thereby providing a theoretical foundation for enhancing gear dynamics and extending the service life of transmission systems.
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Citation
Zhao, Z., Sun, X., Wu, Z., Tang, X., et al., "Research on Asymmetric Gear Stiffness," 2025 International Conference on Intelligent Manufacturing and Mechatronics (ICIMM 2025), Nanchang, China, October 24, 2025, .
Additional Details
Publisher
Published
2 hours ago
Product Code
2026-99-0332
Content Type
Technical Paper
Language
English