Design and Analysis of a Hydraulic System for theTest Stand
碩士 === 逢甲大學 === 智能製造與工程管理碩士在職學位學程 === 107 === This study is focus on the system design and components selection of the hydraulic system for a suspension test stand. The hydraulic circuit design and component selection are based on the system requirements and components characteristics. During the te...
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ndltd-TW-107FCU016210202019-07-30T03:37:26Z http://ndltd.ncl.edu.tw/handle/s9qxnk Design and Analysis of a Hydraulic System for theTest Stand 試車台液壓系統設計分析 CHAI, JUI-LIN 柴瑞林 碩士 逢甲大學 智能製造與工程管理碩士在職學位學程 107 This study is focus on the system design and components selection of the hydraulic system for a suspension test stand. The hydraulic circuit design and component selection are based on the system requirements and components characteristics. During the test procedure of an aero-engine hanging on the test frame, the load on the hydraulic cylinder varies with time. In order to understand the effects of the components characteristics on the system response and to obtain the most suitable hydraulic components for the system, the fluid power simulation software, HyPneu, is applied for the system dynamic simulation. The analysis results show that the discharge Coefficients, Kv, of the directional control valve and of the flow control valve in the system has a significant influence on the cylinder velocity. The cylinder velocity increases as Kv increase. On the contrary, the cylinder velocity is restricted as Kv is decreased. The pressure drop in the valve increases as Kv decreases, which causes system relief valve to open and reduces the fluid flow into the cylinder. This study successfully provides the information of the hydraulic circuit design and the most suitable hydraulic components selection to fulfill the system requirements Minter Cheng 成銘德 2019 學位論文 ; thesis 59 zh-TW |
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碩士 === 逢甲大學 === 智能製造與工程管理碩士在職學位學程 === 107 === This study is focus on the system design and components selection of the hydraulic system for a suspension test stand. The hydraulic circuit design and component selection are based on the system requirements and components characteristics. During the test procedure of an aero-engine hanging on the test frame, the load on the hydraulic cylinder varies with time. In order to understand the effects of the components characteristics on the system response and to obtain the most suitable hydraulic components for the system, the fluid power simulation software, HyPneu, is applied for the system dynamic simulation.
The analysis results show that the discharge Coefficients, Kv, of the directional control valve and of the flow control valve in the system has a significant influence on the cylinder velocity. The cylinder velocity increases as Kv increase. On the contrary, the cylinder velocity is restricted as Kv is decreased. The pressure drop in the valve increases as Kv decreases, which causes system relief valve to open and reduces the fluid flow into the cylinder. This study successfully provides the information of the hydraulic circuit design and the most suitable hydraulic components selection to fulfill the system requirements
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author2 |
Minter Cheng |
author_facet |
Minter Cheng CHAI, JUI-LIN 柴瑞林 |
author |
CHAI, JUI-LIN 柴瑞林 |
spellingShingle |
CHAI, JUI-LIN 柴瑞林 Design and Analysis of a Hydraulic System for theTest Stand |
author_sort |
CHAI, JUI-LIN |
title |
Design and Analysis of a Hydraulic System for theTest Stand |
title_short |
Design and Analysis of a Hydraulic System for theTest Stand |
title_full |
Design and Analysis of a Hydraulic System for theTest Stand |
title_fullStr |
Design and Analysis of a Hydraulic System for theTest Stand |
title_full_unstemmed |
Design and Analysis of a Hydraulic System for theTest Stand |
title_sort |
design and analysis of a hydraulic system for thetest stand |
publishDate |
2019 |
url |
http://ndltd.ncl.edu.tw/handle/s9qxnk |
work_keys_str_mv |
AT chaijuilin designandanalysisofahydraulicsystemfortheteststand AT cháiruìlín designandanalysisofahydraulicsystemfortheteststand AT chaijuilin shìchētáiyèyāxìtǒngshèjìfēnxī AT cháiruìlín shìchētáiyèyāxìtǒngshèjìfēnxī |
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1719231392832815104 |