Aiming to effectively reduce the friction caused by the contact between the rotor and the stator, the ultrasonic extrusion bearing was proposed to apply in a smallscale rotor system, and the dynamic characteristics of the bearingrotor system were studied. The mode shape and frequency of the piezoelectric transducer′s optimal operation were determined by using ANSYS. The Reynolds equations for gasextrusion membranes were deduced and solved by the finite difference method. The effects of suspension gap and ultrasonic amplitude on the dynamic characteristics of the bearingrotor system were studied, which were validated by experimental test. The results show that the bearing can achieve stable operation and works better at the resonant frequency of the piezoelectric transducer.
姚红良,李文龙,刘帅,闻邦椿.超声挤压轴承转子系统动力学特性研究[J].动力学与控制学报,2019,17(2):185~190; Yao Hongliang, Li Wenlong, Liu Shuai, Wen Bangchun. Dynamic characteristics of ultrasonic extrusion bearing-rotor system[J]. Journal of Dynamics and Control,2019,17(2):185-190.