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Dynamic Characteristics of Lubrication and Wear Prediction of Slipper/Swash-Plate in Axial Piston Pumps 被引量:1

Dynamic Characteristics of Lubrication and Wear Prediction of Slipper/Swash-Plate in Axial Piston Pumps
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摘要 A novel dynamic model describing the slipper posture of the swash plate in axial piston pumps is proposed, taking into account the hydrodynamic and squeezing effects, which involves three degrees of freedom. The variation in the lubricating film thickness and the slipper tilt are accurately calculated. The influence of hydrodynamic effects and charging pressure on the slipper lubrication is discussed. The minimum film thickness, the overturning angle and the azimuth angle are obtained.Then, the trajectory of minimum thickness on the friction surface of the swash plate is predicted, the accuracy of which can be verified with the abrasion distribution of an actual swash plate. Research results can predict the durability and provide theoretical help for the design of the slipper. A novel dynamic model describing the slipper posture of the swash plate in axial piston pumps is proposed,taking into account the hydrodynamic and squeezing effects,which involves three degrees of freedom.The variation in the lubricating film thickness and the slipper tilt are accurately calculated.The influence of hydrodynamic effects and charging pressure on the slipper lubrication is discussed.The minimum film thickness,the overturning angle and the azimuth angle are obtained.Then,the trajectory of minimum thickness on the friction surface of the swash plate is predicted,the accuracy of which can be verified with the abrasion distribution of an actual swash plate.Research results can predict the durability and provide theoretical help for the design of the slipper.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2019年第3期519-528,共10页 北京理工大学学报(英文版)
基金 Supported by the National Ministry Innovation Program of China(VTDP 3103)
关键词 slipper/swash-plate PAIR LUBRICATION DYNAMIC characteristics WEAR predicting slipper/swash-plate pair lubrication dynamic characteristics wear predicting
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