Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor

Abstract The current research of seawater hydraulic motor mainly focused on piston motor and vane motor, but seldom regarded low speed high torque seawater hydraulic motor. Low speed high torque seawater hydraulic motor as a kind of energy conversion device and actuator plays an important role in se...

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Main Authors: Zhiqiang Wang, Shaofeng Wu, Dianrong Gao, Shuncai Wang
Format: Article
Language:English
Published: SpringerOpen 2019-12-01
Series:Chinese Journal of Mechanical Engineering
Subjects:
Online Access:https://doi.org/10.1186/s10033-019-0422-y
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spelling doaj-6d31dd660c364ec899893c839c7e00a62020-12-20T12:11:09ZengSpringerOpenChinese Journal of Mechanical Engineering1000-93452192-82582019-12-0132111310.1186/s10033-019-0422-yDistribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic MotorZhiqiang Wang0Shaofeng Wu1Dianrong Gao2Shuncai Wang3School of Mechanical Engineering, Hangzhou Dianzi UniversitySchool of Mechanical Engineering, Hangzhou Dianzi UniversitySchool of Mechanical Engineering, Yanshan UniversitycnCATS, Faculty of Engineering and the Environment, University of SouthamptonAbstract The current research of seawater hydraulic motor mainly focused on piston motor and vane motor, but seldom regarded low speed high torque seawater hydraulic motor. Low speed high torque seawater hydraulic motor as a kind of energy conversion device and actuator plays an important role in seawater hydraulic transmission system. However, the physical and chemical properties of seawater, such as low viscosity, high causticity and poor lubrication, result in numerous problems. In this paper, the flow distribution characteristics of port plate pairs for the seawater hydraulic motor are investigated, and the leakage flow and power loss models of port plate pairs are established. Numerical simulations are carried out to examine the effects of water film, inlet pressure and rotating speed on the pressure distribution and leakage flow. And the friction and wear tests of port plate pairs are also carried out. Moreover, the test system of the seawater hydraulic motor is constructed and the performance of prototype with no-load or loading is conducted. The results indicate that the clearance of port plate pairs and inlet pressure have a significant effect on distribution characteristics, but the effect of rotating speed is not very obvious. The experimental results show that the minimum error rate can be maintained within 0.3% by the proposed flow model and the counter materials of 316L against carbon-fiber-reinforced polyetheretherketone (CFRPEEK) are suitable for the port plate pairs of seawater hydraulic motor. Finally, based on the seawater hydraulic experiment platform, the volumetric efficiency of no-load and loading are obtained that the maximum can achieve 94.71% and 90.14%, respectively. This research work may improve the flow distribution performance, lubrication and the friction and wear properties, enhance energy converting efficiency of port plate pair and provide theoretical and technical support for the design of high-performance water hydraulic components.https://doi.org/10.1186/s10033-019-0422-ySeawater hydraulic motorPort plate pairsLeakage flowClearanceNumerical simulationFriction and wear
collection DOAJ
language English
format Article
sources DOAJ
author Zhiqiang Wang
Shaofeng Wu
Dianrong Gao
Shuncai Wang
spellingShingle Zhiqiang Wang
Shaofeng Wu
Dianrong Gao
Shuncai Wang
Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
Chinese Journal of Mechanical Engineering
Seawater hydraulic motor
Port plate pairs
Leakage flow
Clearance
Numerical simulation
Friction and wear
author_facet Zhiqiang Wang
Shaofeng Wu
Dianrong Gao
Shuncai Wang
author_sort Zhiqiang Wang
title Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
title_short Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
title_full Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
title_fullStr Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
title_full_unstemmed Distribution Performance Analysis and Experimental Research on the Port Plate Pairs of Low Speed High Torque Seawater Hydraulic Motor
title_sort distribution performance analysis and experimental research on the port plate pairs of low speed high torque seawater hydraulic motor
publisher SpringerOpen
series Chinese Journal of Mechanical Engineering
issn 1000-9345
2192-8258
publishDate 2019-12-01
description Abstract The current research of seawater hydraulic motor mainly focused on piston motor and vane motor, but seldom regarded low speed high torque seawater hydraulic motor. Low speed high torque seawater hydraulic motor as a kind of energy conversion device and actuator plays an important role in seawater hydraulic transmission system. However, the physical and chemical properties of seawater, such as low viscosity, high causticity and poor lubrication, result in numerous problems. In this paper, the flow distribution characteristics of port plate pairs for the seawater hydraulic motor are investigated, and the leakage flow and power loss models of port plate pairs are established. Numerical simulations are carried out to examine the effects of water film, inlet pressure and rotating speed on the pressure distribution and leakage flow. And the friction and wear tests of port plate pairs are also carried out. Moreover, the test system of the seawater hydraulic motor is constructed and the performance of prototype with no-load or loading is conducted. The results indicate that the clearance of port plate pairs and inlet pressure have a significant effect on distribution characteristics, but the effect of rotating speed is not very obvious. The experimental results show that the minimum error rate can be maintained within 0.3% by the proposed flow model and the counter materials of 316L against carbon-fiber-reinforced polyetheretherketone (CFRPEEK) are suitable for the port plate pairs of seawater hydraulic motor. Finally, based on the seawater hydraulic experiment platform, the volumetric efficiency of no-load and loading are obtained that the maximum can achieve 94.71% and 90.14%, respectively. This research work may improve the flow distribution performance, lubrication and the friction and wear properties, enhance energy converting efficiency of port plate pair and provide theoretical and technical support for the design of high-performance water hydraulic components.
topic Seawater hydraulic motor
Port plate pairs
Leakage flow
Clearance
Numerical simulation
Friction and wear
url https://doi.org/10.1186/s10033-019-0422-y
work_keys_str_mv AT zhiqiangwang distributionperformanceanalysisandexperimentalresearchontheportplatepairsoflowspeedhightorqueseawaterhydraulicmotor
AT shaofengwu distributionperformanceanalysisandexperimentalresearchontheportplatepairsoflowspeedhightorqueseawaterhydraulicmotor
AT dianronggao distributionperformanceanalysisandexperimentalresearchontheportplatepairsoflowspeedhightorqueseawaterhydraulicmotor
AT shuncaiwang distributionperformanceanalysisandexperimentalresearchontheportplatepairsoflowspeedhightorqueseawaterhydraulicmotor
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