Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump

Water hydraulic components and systems play pivotal roles in the development of modern hydraulics. Sustainable development and environmental protection cannot be imagined without the use of water as a working medium in modern hydraulic systems. An axial piston pump is the main component of these sys...

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Main Authors: Nenad Todić, Slobodan Savić, Dušan Gordić, Radovan Petrović
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Machines
Subjects:
Online Access:https://www.mdpi.com/2075-1702/10/9/728
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author Nenad Todić
Slobodan Savić
Dušan Gordić
Radovan Petrović
author_facet Nenad Todić
Slobodan Savić
Dušan Gordić
Radovan Petrović
author_sort Nenad Todić
collection DOAJ
description Water hydraulic components and systems play pivotal roles in the development of modern hydraulics. Sustainable development and environmental protection cannot be imagined without the use of water as a working medium in modern hydraulic systems. An axial piston pump is the main component of these systems. This paper presents analytical and experimental methods for the development of an axial piston pump. The presented mathematical model is rooted in numerous research results in the literature and in our own experience. It is based on mathematical modelling of hydrodynamic processes of a water hydraulic axial piston pump which, combined with experimental research, provides a great tool to analyse the influence of different factors on the operating process and to optimise the pump parameters. The experimental equipment used in our tests simulates a real hydraulic installation, and the obtained results are very close to the actual operating parameters. This research included a modification of the swash plate in order to achieve ideal operating parameters and, thus, extend the service life of the pump. Water has a number of advantages over conventional hydraulic oils. It is a sustainable, environmentally friendly resource, more readily available than oil (lower transportation costs), cheaper to dispose of, non-flammable and non-toxic, and its high thermal conductivity aids in cooling.
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spelling doaj.art-d65e1b36682f44669e205c0ebdb18de72023-11-23T17:25:49ZengMDPI AGMachines2075-17022022-08-0110972810.3390/machines10090728Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic PumpNenad Todić0Slobodan Savić1Dušan Gordić2Radovan Petrović3Faculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, SerbiaFaculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, SerbiaFaculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, SerbiaFaculty of Information Technology and Engineering, University “Union-Nikola Tesla” of Belgrade, Jurija Gagarina 149a, 11070 Belgrade, SerbiaWater hydraulic components and systems play pivotal roles in the development of modern hydraulics. Sustainable development and environmental protection cannot be imagined without the use of water as a working medium in modern hydraulic systems. An axial piston pump is the main component of these systems. This paper presents analytical and experimental methods for the development of an axial piston pump. The presented mathematical model is rooted in numerous research results in the literature and in our own experience. It is based on mathematical modelling of hydrodynamic processes of a water hydraulic axial piston pump which, combined with experimental research, provides a great tool to analyse the influence of different factors on the operating process and to optimise the pump parameters. The experimental equipment used in our tests simulates a real hydraulic installation, and the obtained results are very close to the actual operating parameters. This research included a modification of the swash plate in order to achieve ideal operating parameters and, thus, extend the service life of the pump. Water has a number of advantages over conventional hydraulic oils. It is a sustainable, environmentally friendly resource, more readily available than oil (lower transportation costs), cheaper to dispose of, non-flammable and non-toxic, and its high thermal conductivity aids in cooling.https://www.mdpi.com/2075-1702/10/9/728axial piston pumpwater hydraulicmathematical modelexperimental researchhydrodynamic processes
spellingShingle Nenad Todić
Slobodan Savić
Dušan Gordić
Radovan Petrović
Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
Machines
axial piston pump
water hydraulic
mathematical model
experimental research
hydrodynamic processes
title Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
title_full Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
title_fullStr Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
title_full_unstemmed Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
title_short Experimental Research of the Hydrodynamic Processes of an Axial Piston Water Hydraulic Pump
title_sort experimental research of the hydrodynamic processes of an axial piston water hydraulic pump
topic axial piston pump
water hydraulic
mathematical model
experimental research
hydrodynamic processes
url https://www.mdpi.com/2075-1702/10/9/728
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AT dusangordic experimentalresearchofthehydrodynamicprocessesofanaxialpistonwaterhydraulicpump
AT radovanpetrovic experimentalresearchofthehydrodynamicprocessesofanaxialpistonwaterhydraulicpump