Coupled evolution of piston asperity and cylinder bore contour of piston/cylinder pair in axial piston pump

被引:0
|
作者
Fei LYU [1 ]
Junhui ZHANG [1 ]
Shoujun ZHAO [2 ]
Kun LI [3 ]
Bing XU [1 ]
Weidi HUANG [1 ]
Haogong XU [1 ]
Xiaochen HUANG [1 ]
机构
[1] State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University
[2] Beijing Institute of Precision Mechatronics and Controls
[3] Qing'an Group Co., Ltd.
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TH137.51 [液压马达、液压缸和泵];
学科分类号
080401 ; 080704 ;
摘要
The wear condition of the piston/cylinder pair is crucial to the performance and reliability of the axial piston pump. The hard piston surface, the soft cylinder bore surface, and the interface oil film affects each other during the wear process. Specifically, in the mixed lubrication region,the geometry of the hard piston surface asperity directly affects the wear of soft cylinder bore surface, while the asperities may deform or even degrade when penetrating and sliding against the cylinder bore. So far, there is no suitable method to simulate their coupled evolution. This paper proposed a wear process simulation model considering the real-time interaction between the elasto-plastic deformation of the piston surface asperity, the wear contour of the cylinder bore,and the lubrication condition of the interface. An offline library of the elasto-plastic constitutive behavior of the asperity based on the finite element method(FEM) is established as a part of the simulation model to precisely analyze the deformation and degradation of the asperity and quickly invoke them in the numerical wear process simulation. The simulation and experimental results show that the piston asperity and the cylinder bore contour converge to a steady state after running-in for about 0.5 h. The distribution of the simulated asperity degradation and wear depth is also verified by the experiment.
引用
收藏
页码:395 / 407
页数:13
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