Research on nonlinear dynamics and primary resonance characteristics of electric drive gear transmission system for clean propulsion vehicles

Author:

Mo Shuai12345ORCID,Liu Wenbin12ORCID,Tang Xu12,Zhang Wei1

Affiliation:

1. State Key Laboratory of Featured Metal Materials and Life-cycle Safety for Composite Structures, Guangxi University, Nanning, China

2. School of Mechanical Engineering, Guangxi University, Nanning, China

3. Guangxi Key Laboratory of Disaster Prevention and Engineering Safety, Guangxi University, Nanning, China

4. State Key Lab of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan, China

5. National Key Laboratory of Science and Technology on Helicopter Transmission, Nanjing, China

Abstract

To study the nonlinear dynamic characteristics of the electric drive transmission system of clean propulsion vehicles, a rotor-bearing system consisting of dual-stage meshing gear pairs and multiple loaded bearings was established. The influence of time-varying meshing stiffness, tooth side clearance, bearing clearance, and other factors were considered. A multi-degree of freedom vibration differential of the system was established equation, to analyze the vibration characteristics of various parts of the transmission system under different parameters. Using time-domain diagrams, poincaré cross-sections, bifurcation diagrams, and other images to study the vibration of gears. In addition, the primary resonance stability equation of the system is derived and its stability under different conditions is analyzed using meshing damping, stiffness, and load as variables. The results show that as the rotational speed increases, the first stage gear of the system undergoes the “single cycle-bifurcation-chaos-bifurcation-single cycle” vibration process, while the second stage gear undergoes two such processes. The instability intervals can be obtained as [3092,4859] and [8098,10896] r/min, [2797,3533] and [9423,14135] r/min respectively. Avoiding these speed ranges helps to improve the stability and safety of automotive motion.

Funder

Open Fund of State Key Laboratory of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology

Entrepreneurship and Innovation Talent Program of Taizhou City, Jiangsu Province.

National Natural Science Foundation of China

National Key Laboratory of Science and Technology on Helicopter Transmission

Publisher

SAGE Publications

Subject

Mechanical Engineering,Condensed Matter Physics

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