Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve
The precision spool valve is the core component of the electro-hydraulic servo control system, and its performance has an important influence on the flight control of aviation and aerospace products. The non-uniform surface topography error causes a non-uniform mating gap field inside the spool valv...
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doaj-d081aab755a748ff8f15f065ebc89a232021-08-26T13:59:34ZengMDPI AGMachines2075-17022021-08-01915715710.3390/machines9080157Digital Twin-Driven Mating Performance Analysis for Precision Spool ValveWenbin Tang0Guangshen Xu1Shoujing Zhang2Shoufeng Jin3Runxiao Wang4School of Mechanical and Electrical Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Mechanical and Electrical Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Mechanical and Electrical Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Mechanical and Electrical Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Mechanical and Electrical Engineering, Northwestern Polytechnical University, Xi’an 710072, ChinaThe precision spool valve is the core component of the electro-hydraulic servo control system, and its performance has an important influence on the flight control of aviation and aerospace products. The non-uniform surface topography error causes a non-uniform mating gap field inside the spool valve, which causes oil leakage and leads to deterioration of the spool valve performance. However, the current oil leakage calculation method only considers the influence of size errors, which is not comprehensive. Thus, how to characterize the mating behavior of the spool valve and its effect on oil leakage with consideration of surface topography errors is the key to evaluating the performance of the spool valve. This paper proposes a new way of analyzing the mating performance of precision spool valves, which considers the surface topography errors based on digital twin technology. Firstly, a general framework for the analysis of mating performance of precision spool valve based on a digital twin is proposed. Then, key technologies of assembly interface geometry modeling, matching behavior modeling and performance analysis are studied. Finally, a quantitative correlation between the mating parameters and the oil leakage of the precision spool valve is revealed. The method is tested on a practical case. This proposed method can provide theoretical support for the accurate prediction and evaluation of the mating performance of the precision spool valve.https://www.mdpi.com/2075-1702/9/8/157digital twinprecision spool valvemating performancesurface topography |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wenbin Tang Guangshen Xu Shoujing Zhang Shoufeng Jin Runxiao Wang |
spellingShingle |
Wenbin Tang Guangshen Xu Shoujing Zhang Shoufeng Jin Runxiao Wang Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve Machines digital twin precision spool valve mating performance surface topography |
author_facet |
Wenbin Tang Guangshen Xu Shoujing Zhang Shoufeng Jin Runxiao Wang |
author_sort |
Wenbin Tang |
title |
Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve |
title_short |
Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve |
title_full |
Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve |
title_fullStr |
Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve |
title_full_unstemmed |
Digital Twin-Driven Mating Performance Analysis for Precision Spool Valve |
title_sort |
digital twin-driven mating performance analysis for precision spool valve |
publisher |
MDPI AG |
series |
Machines |
issn |
2075-1702 |
publishDate |
2021-08-01 |
description |
The precision spool valve is the core component of the electro-hydraulic servo control system, and its performance has an important influence on the flight control of aviation and aerospace products. The non-uniform surface topography error causes a non-uniform mating gap field inside the spool valve, which causes oil leakage and leads to deterioration of the spool valve performance. However, the current oil leakage calculation method only considers the influence of size errors, which is not comprehensive. Thus, how to characterize the mating behavior of the spool valve and its effect on oil leakage with consideration of surface topography errors is the key to evaluating the performance of the spool valve. This paper proposes a new way of analyzing the mating performance of precision spool valves, which considers the surface topography errors based on digital twin technology. Firstly, a general framework for the analysis of mating performance of precision spool valve based on a digital twin is proposed. Then, key technologies of assembly interface geometry modeling, matching behavior modeling and performance analysis are studied. Finally, a quantitative correlation between the mating parameters and the oil leakage of the precision spool valve is revealed. The method is tested on a practical case. This proposed method can provide theoretical support for the accurate prediction and evaluation of the mating performance of the precision spool valve. |
topic |
digital twin precision spool valve mating performance surface topography |
url |
https://www.mdpi.com/2075-1702/9/8/157 |
work_keys_str_mv |
AT wenbintang digitaltwindrivenmatingperformanceanalysisforprecisionspoolvalve AT guangshenxu digitaltwindrivenmatingperformanceanalysisforprecisionspoolvalve AT shoujingzhang digitaltwindrivenmatingperformanceanalysisforprecisionspoolvalve AT shoufengjin digitaltwindrivenmatingperformanceanalysisforprecisionspoolvalve AT runxiaowang digitaltwindrivenmatingperformanceanalysisforprecisionspoolvalve |
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1721192068523491328 |