DocumentCode
3162726
Title
Vibration frequency vibratory roller stepless design and analysis of the hydraulic system
Author
Tao-ping, Yan
Author_Institution
Fac. of Transp. Eng., HuaiYin Inst. of Technol., Huai´´an, China
fYear
2011
fDate
16-18 April 2011
Firstpage
4621
Lastpage
4624
Abstract
This paper studies on vibratory roller. Through designing and analyzing the return circuit of hydraulic pump and the main circuit of stepless frequency vibration system, the paper explains that the frequency control of vibration roller adopts pump-controlled system consisting of variable pump and hydraulic motor. By changing the input current of electrical hydraulic servo valve, the pump swashplate angle can be changed. Thus, the displacement of variable pump can be changed and the purpose of changing the motor´s rotate speed is achieved. The vibration frequency of hydraulic vibration system can be regulated steplessly among the designed range in accordance with the operating requirements. Furthermore, based on known conditions, to compute and selecte the main components of hydraulic pump and hydraulic motor, to check the relevant parameters of the hydraulic system, and to test and verify whether the selected hydraulic pump and hydraulic motor meet the system requirements.
Keywords
design engineering; frequency control; hydraulic motors; pumps; rollers (machinery); servomotors; valves; vibrations; electrical hydraulic servo valve; frequency control; hydraulic motor; hydraulic pump; hydraulic vibration system; motor rotate speed; pump controlled system; pump swashplate angle; return circuit; stepless frequency vibration system; variable pump; vibratory roller stepless design; Compaction; Frequency control; Pistons; Servomotors; Valves; Vibrations; design analysis; hydraulic motor; hydraulic pump; steplessly adjustable frequency hydraulic system; vibratory roller;
fLanguage
English
Publisher
ieee
Conference_Titel
Consumer Electronics, Communications and Networks (CECNet), 2011 International Conference on
Conference_Location
XianNing
Print_ISBN
978-1-61284-458-9
Type
conf
DOI
10.1109/CECNET.2011.5768984
Filename
5768984
Link To Document