Fluid Power-Progress in a Key Technology
This paper outlines some of the developments in fluid power technology to overcome the challenges posed by other forms of energy transmission. It is shown that many of these advances are associated with the incorporation of electronic devices, microprocessors and the application of modern control te...
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Veröffentlicht in: | JSME International Journal Series B Fluids and Thermal Engineering 1994/11/15, Vol.37(4), pp.691-701 |
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container_title | JSME International Journal Series B Fluids and Thermal Engineering |
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creator | Burrows, R.C. |
description | This paper outlines some of the developments in fluid power technology to overcome the challenges posed by other forms of energy transmission. It is shown that many of these advances are associated with the incorporation of electronic devices, microprocessors and the application of modern control techniques as well as improvements in fluid power components. A central issue is the reduction of pump flow-ripple in order to reduce system vibration and noise. Other environmental factors are also discussed. |
doi_str_mv | 10.1299/jsmeb.37.691 |
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It is shown that many of these advances are associated with the incorporation of electronic devices, microprocessors and the application of modern control techniques as well as improvements in fluid power components. A central issue is the reduction of pump flow-ripple in order to reduce system vibration and noise. Other environmental factors are also discussed.</description><identifier>ISSN: 1340-8054</identifier><identifier>EISSN: 1347-5371</identifier><identifier>DOI: 10.1299/jsmeb.37.691</identifier><language>eng</language><publisher>Tokyo: The Japan Society of Mechanical Engineers</publisher><subject>Applied sciences ; Control ; Drives ; Exact sciences and technology ; Mechanical engineering. Machine design ; Noise ; Pumps ; Speed variators, torque converters. 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It is shown that many of these advances are associated with the incorporation of electronic devices, microprocessors and the application of modern control techniques as well as improvements in fluid power components. A central issue is the reduction of pump flow-ripple in order to reduce system vibration and noise. Other environmental factors are also discussed.</description><subject>Applied sciences</subject><subject>Control</subject><subject>Drives</subject><subject>Exact sciences and technology</subject><subject>Mechanical engineering. Machine design</subject><subject>Noise</subject><subject>Pumps</subject><subject>Speed variators, torque converters. 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Machine design</topic><topic>Noise</topic><topic>Pumps</topic><topic>Speed variators, torque converters. 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It is shown that many of these advances are associated with the incorporation of electronic devices, microprocessors and the application of modern control techniques as well as improvements in fluid power components. A central issue is the reduction of pump flow-ripple in order to reduce system vibration and noise. Other environmental factors are also discussed.</abstract><cop>Tokyo</cop><pub>The Japan Society of Mechanical Engineers</pub><doi>10.1299/jsmeb.37.691</doi><tpages>11</tpages><oa>free_for_read</oa></addata></record> |
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identifier | ISSN: 1340-8054 |
ispartof | JSME International Journal Series B Fluids and Thermal Engineering, 1994/11/15, Vol.37(4), pp.691-701 |
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language | eng |
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source | EZB Electronic Journals Library; J-STAGE |
subjects | Applied sciences Control Drives Exact sciences and technology Mechanical engineering. Machine design Noise Pumps Speed variators, torque converters. Hydraulic drives and controls, pneumatic drives and controls, fluids and components, hydraulic motors, pneumatic motors System Design Water Hydraulics |
title | Fluid Power-Progress in a Key Technology |
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