LAPSE:2023.1553
Published Article
LAPSE:2023.1553
Performance-Matching Optimization Design of Loader-Hydraulic System Based on Hydrodynamics Analysis
Haifei Wang, Shimin Yang, Tan Lu
February 21, 2023
Abstract
The study of the performance of dynamic hydraulic throttling under the condition of stable fluid is of great significance. The effect of a step change in pressure differences on the throttling performance of a hydraulic valve is studied. This paper studies the dynamic and static performance of a hydraulic-valve-outlet throttling-speed regulation system, builds a more accurate mathematical model, considers the linear factors of the flow of hydraulic-valve throttling, analyzes the influence of the step-load change in pressure difference on the stability of the hydraulic-valve movement speed, and constructs a nonlinear mathematical model of the speed-regulation system of the outlet throttling. A pressure sensor is used to measure the change in pressure overshoot, and the effect of a pressure-difference step change on the throttling performance of the hydraulic valve is studied under steady-fluid conditions. The theory is analyzed and verified by experiment, and the parameters of hydraulic components are modified using the dynamic-change rule of the hydraulic valve’s two-chamber pressure.
Keywords
hydraulic system, hydraulic valve, hydrodynamics, loader, pressure overshoot
Suggested Citation
Wang H, Yang S, Lu T. Performance-Matching Optimization Design of Loader-Hydraulic System Based on Hydrodynamics Analysis. (2023). LAPSE:2023.1553
Author Affiliations
Wang H: School of Construction Machinery, Chang’an University, Xi’an 710064, China
Yang S: School of Construction Machinery, Chang’an University, Xi’an 710064, China
Lu T: Shanxi Deli Electrical and Mechanical Technology Co., Ltd., Xi’an 710012, China
Journal Name
Processes
Volume
10
Issue
8
First Page
1524
Year
2022
Publication Date
2022-08-03
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr10081524, Publication Type: Journal Article
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LAPSE:2023.1553
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https://doi.org/10.3390/pr10081524
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Feb 21, 2023
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Feb 21, 2023
 
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