Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach
One of the main parts in a hydraulic system is the directional control valve, which is needed in order to operate an hydraulic actuator. The magneto-rheological (MR) valve has been proven can replace hydraulic directional control valve for controlling hydraulic actuator by few researcher in the form...
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my-usm-ep.433902019-04-12T05:26:28Z Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach 2011-11 Salloom, Maher Yahya TJ1 Mechanical engineering and machinery One of the main parts in a hydraulic system is the directional control valve, which is needed in order to operate an hydraulic actuator. The magneto-rheological (MR) valve has been proven can replace hydraulic directional control valve for controlling hydraulic actuator by few researcher in the form of Wheatstone bridge arrangement of four set of MR valve with no moving part. However, the arrangement is not compact in one unit. Generally, compact unit is more practical to be used in hydraulic system. Thus, a new design needs to be considered to produce compact unit. The main objectives of this present research are to design a MR directional control valve using MR fluid, to analyse its magnetic circuit using FEMM software, and to study and simulate the performance of this valve. 2011-11 Thesis http://eprints.usm.my/43390/ http://eprints.usm.my/43390/1/MAHER%20YAHYA%20SALLOOM.pdf application/pdf en public phd doctoral Universiti Sains Malaysia Pusat Pengajian Kejuteraan Makanikal |
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TJ1 Mechanical engineering and machinery |
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TJ1 Mechanical engineering and machinery Salloom, Maher Yahya Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
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One of the main parts in a hydraulic system is the directional control valve, which is needed in order to operate an hydraulic actuator. The magneto-rheological (MR) valve has been proven can replace hydraulic directional control valve for controlling hydraulic actuator by few researcher in the form of Wheatstone bridge arrangement of four set of MR valve with no moving part. However, the arrangement is not compact in one unit. Generally, compact unit is more practical to be used in hydraulic system. Thus, a new design needs to be considered to produce compact unit. The main objectives of this present research are to design a MR directional control valve using MR fluid, to analyse its magnetic circuit using FEMM software, and to study and simulate the performance of this valve. |
format |
Thesis |
qualification_name |
Doctor of Philosophy (PhD.) |
qualification_level |
Doctorate |
author |
Salloom, Maher Yahya |
author_facet |
Salloom, Maher Yahya |
author_sort |
Salloom, Maher Yahya |
title |
Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
title_short |
Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
title_full |
Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
title_fullStr |
Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
title_full_unstemmed |
Performance Analysis Of A New Compact Magneto-Rheological Proportional Control Valve For Hydraulic Actuation Using Fem And Experimental Approach |
title_sort |
performance analysis of a new compact magneto-rheological proportional control valve for hydraulic actuation using fem and experimental approach |
granting_institution |
Universiti Sains Malaysia |
granting_department |
Pusat Pengajian Kejuteraan Makanikal |
publishDate |
2011 |
url |
http://eprints.usm.my/43390/1/MAHER%20YAHYA%20SALLOOM.pdf |
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1747821205379874816 |