Study on Impact Characteristics of Multistage Double Crown Face Gear Pairs considering Ratio Switching under Variable Conditions

Author:

Chen Xingbin123ORCID,Min Xinhe13,Zhang Peng13,Li Nini13,Zhong Zhihong4,Wu Yuansheng13

Affiliation:

1. Guangzhou Mechanical Engineering Research Institute Co., Ltd., Guangzhou 510700, China

2. School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510641, China

3. CRAT Testing & Certification Company Ltd., Guangzhou 510700, China

4. BOLUO Science, Technology, Industry and Information Bureau, BOLUO Investment Promotion Center, Huizhou, Guangdong 516100, China

Abstract

This paper presents a new transmission mechanism with multistage face gears as the core components for realizing variable speeds with differential meshing. To improve face gear transmission smoothness, suppress meshing resonance, reduce noise, and optimize power transmission performance during the gear shifting process, load distribution between meshing teeth during the transmission process and impact loads during various shifting stages must be determined. Herein, we present a gear impact model considering double crown gear meshing configuration, contact deformation, variable working conditions, and jump impact at meshing points. A single-stage face gear pair is considered as object that the impact characteristics are comparatively studied under four conditions: with/without load and constant/variable speed. The results were used to analyze transient characteristics of the crown gear under contact deformation or frequent shifting impact. Based on this, the impact characteristics of multistage face gear pairs between ratio switching were extendedly investigated under four input conditions: constant/variable torque or constant/variable speed. The results were used to determine the meshing force and impact force fluctuation characteristics of multistage face gear pairs while adapting to various loads and continuous acceleration/deceleration. The proposed model can be beneficial to evaluate the feasibility of multistage gear structures with crown configuration and to obtain boundary conditions for transmission systems.

Funder

National Key Research and Development Plan of China

Publisher

Hindawi Limited

Subject

Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering

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