Dynamic contact and stiffness characteristic analysis of angular contact ball bearings under combined external loads

Author:

Li Zhen1,Wang Qingshan1ORCID,Wang Ruihua1,Qin Bin234

Affiliation:

1. State Key Laboratory of Precision Manufacturing for Extreme Service, Central South University, Changsha, PR China

2. Key Laboratory of Traffic Safety on Track, Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, PR China

3. Joint International Research Laboratory of Key Technology for Rail Traffic Safety, Central South University, Changsha, PR China

4. National & Local Joint Engineering Research Center of Safety Technology for Rail Vehicle, Central South University, Changsha, PR China

Abstract

A nonlinear dynamic model of angular contact ball bearing under combined external loads is established based on the nonlinear elastic Hertz contact theory and raceless control theory. The established dynamic model is solved by employing variable step size Newton Raphson iteration method and the validation of model is verified by comparing the proposed results with the corresponding results come from the existing literatures. The solution of the presented model has high accuracy compared with the existing experimental results. In addition, the computational efficiency of the proposed model is improved significantly by introducing iteration step size adjustment factor. According to the proposed model, the dynamic contact and stiffness characteristics of angular contact ball are studied systematically by investigating the effects of combined external load working conditions on the contact parameters including contact angle and contact force and the stiffness parameters including diagonal stiffness and off-diagonal stiffness. This research can provide the theoretical basis and technique guidance for the designation and manufacture of angular contact ball bearing under combined external loads.

Funder

the State Key Laboratory of High Performance Complex Manufacturing

Key Laboratory of Vibration and Control of Aero-Propulsion System

National Natural Science Foundation of China

the Natural Science Foundation of Hunan Province of China

Central South University Innovation-Driven Research Program, China

Publisher

SAGE Publications

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