Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory

Micro vibration of the aerostatic guide way has a significant impact on its dynamic characteristics and stability, which limits the development of pneumatic component. High pressure gas molecules have been collided with the supporting surface and the internal surface of the throttle during the flow...

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Main Authors: Yang Shao Hua, Long Wei, Gong Ling
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20166302018
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spelling doaj-070933c3622c482ca9540faf1fa82a002021-02-02T04:56:41ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01630201810.1051/matecconf/20166302018matecconf_mmme2016_02018Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theoryYang Shao Hua0Long Wei1Gong Ling2Faculty of mechanical and electrical engineering, Kunming University of Science and TechnologyFaculty of mechanical and electrical engineering, Kunming University of Science and TechnologyFaculty of mechanical and electrical engineering, Kunming University of Science and TechnologyMicro vibration of the aerostatic guide way has a significant impact on its dynamic characteristics and stability, which limits the development of pneumatic component. High pressure gas molecules have been collided with the supporting surface and the internal surface of the throttle during the flow process. Variable impulse of the surfaces aside for the gas film are affected by the changes of impulse which formed irregular impact force in horizontal and vertical direction. Micro-vibration takes place based on the natural frequency of the system and its frequency doubling. In this paper, the vibration model was established to describe the dynamic characteristics of the gas film, and the formation mechanism of micro vibration in the film is defined. Through the simulation analysis and experimental comparison, formation mechanism of the micro vibration in the gas film is confirmed. It was proposed that the micro vibration of gas film can be produced no matter whether there is a gas chamber or not in the throttle. Under the same conditions, the micro vibration of the guide way with air chamber is greater than that without any chamber. The frequency points of the vibration peaks are almost the same, as well as the vibration pattern in the frequency domain.http://dx.doi.org/10.1051/matecconf/20166302018
collection DOAJ
language English
format Article
sources DOAJ
author Yang Shao Hua
Long Wei
Gong Ling
spellingShingle Yang Shao Hua
Long Wei
Gong Ling
Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
MATEC Web of Conferences
author_facet Yang Shao Hua
Long Wei
Gong Ling
author_sort Yang Shao Hua
title Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
title_short Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
title_full Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
title_fullStr Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
title_full_unstemmed Analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
title_sort analysis of micro vibration in gas film of aerostatic guide way based on molecule collision theory
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description Micro vibration of the aerostatic guide way has a significant impact on its dynamic characteristics and stability, which limits the development of pneumatic component. High pressure gas molecules have been collided with the supporting surface and the internal surface of the throttle during the flow process. Variable impulse of the surfaces aside for the gas film are affected by the changes of impulse which formed irregular impact force in horizontal and vertical direction. Micro-vibration takes place based on the natural frequency of the system and its frequency doubling. In this paper, the vibration model was established to describe the dynamic characteristics of the gas film, and the formation mechanism of micro vibration in the film is defined. Through the simulation analysis and experimental comparison, formation mechanism of the micro vibration in the gas film is confirmed. It was proposed that the micro vibration of gas film can be produced no matter whether there is a gas chamber or not in the throttle. Under the same conditions, the micro vibration of the guide way with air chamber is greater than that without any chamber. The frequency points of the vibration peaks are almost the same, as well as the vibration pattern in the frequency domain.
url http://dx.doi.org/10.1051/matecconf/20166302018
work_keys_str_mv AT yangshaohua analysisofmicrovibrationingasfilmofaerostaticguidewaybasedonmoleculecollisiontheory
AT longwei analysisofmicrovibrationingasfilmofaerostaticguidewaybasedonmoleculecollisiontheory
AT gongling analysisofmicrovibrationingasfilmofaerostaticguidewaybasedonmoleculecollisiontheory
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