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全周边液压滑阀冲蚀形貌及性能演化特性

Translated title of the contribution: Erosion Morphology and Performance Evolution of Full-circumference Hydraulic Slide Valves
  • Shuanglu Li
  • , Yaobao Yin*
  • , Xinbin Zhang
  • , Xiaolu Wang
  • , Junyong Fu
  • *Corresponding author for this work
  • Tongji University
  • Shanghai Aerospace Control Technology Institute

Research output: Contribution to journalArticlepeer-review

Abstract

In view of the profile changes of valve port and performance uncertainty of the high-end hydraulic components caused by erosion of the slide valves, considering the probability of particle hitting the valve port, the quantitative calculation method of the erosion fillet of full-circumference opening slide valve was established based on the Edwards erosion model. Combined with the valve-controlled symmetric cylinder systems, the evolution law of four ports's profiles and the characteristics of the four-sided slide valve after erosions were obtained. The results show that the erosion fillets are directly determined by the particle size, amount, impact velocity, valve opening and so on. The greater the valve port flowrate, the greater the amount of particles, the greater the pressure drop, the greater the impact velocity. The larger the size of particles relative to the valve opening, the greater the probability of particle hitting valve port. In the valve-controlled cylinders power mechanism, the size, speed and load of the hydraulic cylinder determine the flowrate, pressure drop and opening of the valve ports. Under the conditions of constant load and consistent reciprocating speed of hydraulic cylinders, the flowrate of the four valve ports of the valve-controlled symmetric cylinder is the same but the pressure drop is different, the fillets after erosion are inconsistent. Erosion results in the decrease of the pressure gain and increase of leakage of the slide valve, and the null bias occurs, the null bias displacement may be obtained by the balance principle of Wheatstone bridge.

Translated title of the contributionErosion Morphology and Performance Evolution of Full-circumference Hydraulic Slide Valves
Original languageChinese (Traditional)
Pages (from-to)2038-2045
Number of pages8
JournalZhongguo Jixie Gongcheng/China Mechanical Engineering
Volume33
Issue number17
DOIs
StatePublished - 10 Sep 2022
Externally publishedYes

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