多物理
方位(导航)
接触带电
振动
电接点
电压
机械工程
有限元法
固有频率
材料科学
电容
工程类
电流
电气工程
机械
声学
结构工程
摩擦电效应
复合材料
计算机科学
物理
电极
量子力学
人工智能
作者
R. J. Turnbull,Ramin Rahmani,Satyam Paul,Homer Rahnejat
标识
DOI:10.1016/j.triboint.2023.108817
摘要
The trend towards electrification presents new challenges in bearing design. One such consideration is the occurrence of electrical discharge contact pathways, which can lead to surface damage. The current study presents a novel comprehensive multiphysics model, incorporating bearing dynamics, mechanics of lubricated rolling element-to-races contacts and electrical contact model for both DC and AC voltages. The model also includes both electrical resistance and capacitance effects in the bearing contacts. Key bearing vibration frequencies such as cage frequency and the bearing base natural frequency along with the voltage supply frequency are observed as influential in the electric current discharge. The developed model enables the prediction of rhythmic fluting patterns commonly observed in the failed bearing applications subject to electrical discharge.
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