Influence of Shaft Scratch on Static and Transient Behavior of Water-Lubricated Bearing

Author:

Liang Peng1,Li Xingyang1,Guo Feng1,Zhang Xiaohan1,Jiang Fulin1

Affiliation:

1. Qingdao University of Technology School of Mechanical and Automotive Engineering, , 777 Jialingjiang Road, Huangdao District, Qingdao 266520 , China

Abstract

Abstract When sand enters the gap between the shaft and water-lubricated bearing, it will nick surfaces of shaft and bearing bush, and the scratch will appear. The variations of static and transient performance with the number and depth of scratches are studied in the paper. The results show that scratches have a significant effect on the critical load and critical speed of the transformation of bearing lubrication state. The existence of scratches reduces the critical load from elastohydrodynamic lubrication to mixed lubrication. The shaft with scratches vibrates more strongly than the shaft with no scratch at the moment of start-up. The contact area, contact time, and bush-burning probability are directly proportional to the number of scratches. Shaft center movement orbits under step load have the similar “L” shape, whether the shaft has scratch or not. But the scratched shaft has longer movement orbit and lower equilibrium point than the shaft with no scratch. This paper can provide a reference for structure design and service life evaluation of bearing-shaft system.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

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