Affiliation:
1. School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, China
Abstract
Considering rub-impact forces, eccentricity of rotor, and nonlinear stiffness of armature shaft, a dynamic differential equation is built to investigate the bifurcation and chaos behavior of the locomotive traction system. The nonlinear analysis methods are inclusive of bifurcation diagrams, phase plane portraits, Poincaré maps, displacement–time curves, and spectrograms. The simulation results reveal the complex dynamic comprising period-3 to quasi-periodic bifurcation and intermittent bifurcation. Some research results are references for dynamic design and rub-impact fault diagnosis of the locomotive traction system.
Funder
National Basic Research Project of China 973 Program
Nonlinear Dynamics Characteristics of Locomotive Driving System with Rub-Impact Rotor
Cited by
32 articles.
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