Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load

This article studies the cavitation performance and preventing method of the hydromechanical pressure compensation independent metering system (HPCIMS). Compared with the conventional load sensing system (CLSS), the meter-in and meter-out orifices of HPCIMS can be regulated independently. A quasi-st...

Full description

Bibliographic Details
Main Authors: Kailei Liu, Shaopeng Kang, Hongbin Qiang, Chengtao Yu
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/9/2/255
id doaj-582e651f33e94ac28a2d7e8b08ef46c4
record_format Article
spelling doaj-582e651f33e94ac28a2d7e8b08ef46c42021-01-30T00:02:26ZengMDPI AGProcesses2227-97172021-01-01925525510.3390/pr9020255Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active LoadKailei Liu0Shaopeng Kang1Hongbin Qiang2Chengtao Yu3School of Mechanical Engineering, Jiangsu University of Technology, Changzhou 213001, ChinaSchool of Mechanical Engineering, Jiangsu University of Technology, Changzhou 213001, ChinaSchool of Mechanical Engineering, Jiangsu University of Technology, Changzhou 213001, ChinaSchool of Mechanical Engineering, Jiangsu University of Technology, Changzhou 213001, ChinaThis article studies the cavitation performance and preventing method of the hydromechanical pressure compensation independent metering system (HPCIMS). Compared with the conventional load sensing system (CLSS), the meter-in and meter-out orifices of HPCIMS can be regulated independently. A quasi-static behavior analysis of cavitation performance was applied to the HPCIMS and CLSS. The meter-in pressure equation of HPCIMS showed that keeping the ratio of the meter-in and meter-out orifices greater than the minimum value can avoid the cavitation phenomenon. Systems parameters were then kept as constant, and the key parameters related to cavitation performance of the two systems were compared by varying external force. Comparison results show that the cavitation phenomenon in the meter-in chamber of CLSS with the external active load is inevitable, but in HPCIMS, it can prevent the cavitation phenomenon by changing the ratio of the meter-in and meter-out orifices, so the HPCIMS has the cavitation prevention potential.https://www.mdpi.com/2227-9717/9/2/255independent metering systemcavitation preventionexternal active loadhydraulic-mechanical pressure compensation
collection DOAJ
language English
format Article
sources DOAJ
author Kailei Liu
Shaopeng Kang
Hongbin Qiang
Chengtao Yu
spellingShingle Kailei Liu
Shaopeng Kang
Hongbin Qiang
Chengtao Yu
Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
Processes
independent metering system
cavitation prevention
external active load
hydraulic-mechanical pressure compensation
author_facet Kailei Liu
Shaopeng Kang
Hongbin Qiang
Chengtao Yu
author_sort Kailei Liu
title Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
title_short Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
title_full Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
title_fullStr Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
title_full_unstemmed Cavitation Prevention Potential of Hydromechanical Pressure Compensation Independent Metering System with External Active Load
title_sort cavitation prevention potential of hydromechanical pressure compensation independent metering system with external active load
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2021-01-01
description This article studies the cavitation performance and preventing method of the hydromechanical pressure compensation independent metering system (HPCIMS). Compared with the conventional load sensing system (CLSS), the meter-in and meter-out orifices of HPCIMS can be regulated independently. A quasi-static behavior analysis of cavitation performance was applied to the HPCIMS and CLSS. The meter-in pressure equation of HPCIMS showed that keeping the ratio of the meter-in and meter-out orifices greater than the minimum value can avoid the cavitation phenomenon. Systems parameters were then kept as constant, and the key parameters related to cavitation performance of the two systems were compared by varying external force. Comparison results show that the cavitation phenomenon in the meter-in chamber of CLSS with the external active load is inevitable, but in HPCIMS, it can prevent the cavitation phenomenon by changing the ratio of the meter-in and meter-out orifices, so the HPCIMS has the cavitation prevention potential.
topic independent metering system
cavitation prevention
external active load
hydraulic-mechanical pressure compensation
url https://www.mdpi.com/2227-9717/9/2/255
work_keys_str_mv AT kaileiliu cavitationpreventionpotentialofhydromechanicalpressurecompensationindependentmeteringsystemwithexternalactiveload
AT shaopengkang cavitationpreventionpotentialofhydromechanicalpressurecompensationindependentmeteringsystemwithexternalactiveload
AT hongbinqiang cavitationpreventionpotentialofhydromechanicalpressurecompensationindependentmeteringsystemwithexternalactiveload
AT chengtaoyu cavitationpreventionpotentialofhydromechanicalpressurecompensationindependentmeteringsystemwithexternalactiveload
_version_ 1724318495419662336