Impact of lubricant traction coefficient on cage’s dynamic characteristics in high-speed angular contact ball bearing.pdfVIP

Impact of lubricant traction coefficient on cage’s dynamic characteristics in high-speed angular contact ball bearing.pdf

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Impact of lubricant traction coefficient on cage’s dynamic characteristics in high-speed angular contact ball bearing.pdf

Chinese Journal of Aeronautics, (2016), xxx(xx): xxx–xxx Chinese Society of Aeronautics and Astronautics Beihang University Chinese Journal of Aeronautics cja@ Impact of lubricant traction coe?cient on cage’s dynamic characteristics in high-speed angular contact ball bearing Zhang Wenhu a, Deng Sier b,c,*, Chen Guoding a, Cui Yongcun a a School of Mechatronics Engineering, Northwestern Polytechnical University, Xi’an 710071, China b School of Mechatronics Engineering, Henan University of Science and Technology, Luoyang 471003, China c Collaborative Innovation Center of Major Machine Manufacturing in Liaoning, Dalian 116024, China Received 8 March 2016; revised 5 April 2016; accepted 10 May 2016 KEYWORDS Dynamic characteristic; High-speed angular contact ball bearing; Lubricant traction coef?cient; Poincare′ map; Stability Abstract In this paper, the formulas of elasto-hydrodynamic traction coef?cients of three Chinese aviation lubricating oils, 4109, 4106 and 4050, were obtained by a great number of elastohydrodynamic traction tests. The nonlinear dynamics differential equations of high-speed angular contact ball bearing were built on the basis of dynamic theory of rolling bearings and solved by Gear Stiff (GSTIFF) integer algorithm with variable step. The impact of lubricant traction coef?cient on cage’s dynamic characteristics in high-speed angular contact ball bearing was investigated, and Poincare′ map was used to analyze the impact of three types of aviation lubricating oils on the dynamic response of cage’s mass center. And then, the period of dynamic response of cage’s mass center and the slip ratio of cage were used to assess the stability of cage under various working conditions. The results of this paper provide the theoretical basis for the selection and application of aviation lubricating oil. ó 2016 Chinese Society of Aeronautics and Astronautics. Production and hosting by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (/li

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