DocumentCode
3148512
Title
Simulation research of proportional pressure-reducing valve
Author
Yao Guangwei ; Lin Muyi
Author_Institution
Beijing Inf. Sci. & Technol. Univ., Beijing, China
fYear
2010
fDate
23-25 Nov. 2010
Firstpage
121
Lastpage
126
Abstract
The electro-hydraulic brake valve is a key component in electro-hydraulic brake system of the wheeled construction vehicles. Its structure and performance parameters have great influence on the braking system. At present, foreign electro-hydraulic braking system used by the electro-hydraulic brake valve structurally similar to direct-acting proportional pressure-reducing valve which brake pressure can reach to 20MPa. In this paper, a domestic direct-acting proportional pressure-reducing valve whose pressure rating is 2.5MPa will be regarded as the research object. At the same time, we will use MATLAB / Simulink software to set up the dynamic simulation model of proportional pressure-reducing valve for the electro-hydraulic braking system and analyze the influence of the main structural parameters of the valve on system dynamic simulation. By improving the structural parameters, the brake pressure can meet the requirements of construction vehicle. This will provide a theoretical basis for the design and manufacture of the direct-acting proportional pressure-reducing valve which can be applied to the electro-hydraulic brake systems.
Keywords
brakes; braking; electrohydraulic control equipment; mechanical engineering computing; pressure; valves; MATLAB; Simulink; brake pressure; braking system; domestic direct-acting proportional pressure-reducing valve; dynamic simulation model; electro-hydraulic brake system; electro-hydraulic brake valve; structural parameter; system dynamic simulation; wheeled construction vehicle; dynamic simulation; electro-hydraulic brake; proportional pressure-reducing valve;
fLanguage
English
Publisher
iet
Conference_Titel
Advanced Technology of Design and Manufacture (ATDM 2010), International Conference on
Conference_Location
Beijing
Type
conf
DOI
10.1049/cp.2010.1272
Filename
6138992
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