Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring

In order to reduce the failure probability of rubber sealing rings in reciprocating dynamic seal, a new structure of sealing ring based on bionics was designed. The biomimetic ring has three concave ridges and convex bulges on each side which are very similar to earthworms. Bulges were circularly de...

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Main Authors: Chuanjun Han, Han Zhang, Jie Zhang
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:Applied Bionics and Biomechanics
Online Access:http://dx.doi.org/10.1155/2015/358417
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spelling doaj-afbefad4f8dc4163affc3758feeae2f32021-07-02T03:10:00ZengHindawi LimitedApplied Bionics and Biomechanics1176-23221754-21032015-01-01201510.1155/2015/358417358417Structural Design and Sealing Performance Analysis of Biomimetic Sealing RingChuanjun Han0Han Zhang1Jie Zhang2School of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, ChinaSchool of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, ChinaSchool of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, ChinaIn order to reduce the failure probability of rubber sealing rings in reciprocating dynamic seal, a new structure of sealing ring based on bionics was designed. The biomimetic ring has three concave ridges and convex bulges on each side which are very similar to earthworms. Bulges were circularly designed and sealing performances of the biomimetic ring in both static seal and dynamic seal were simulated by FEM. In addition, effects of precompression, medium pressure, speed, friction coefficient, and material parameters on sealing performances were discussed. The results show that von Mises stress of the biomimetic sealing ring distributed symmetrically in no-pressure static sealing. The maximum von Mises stress appears on the second bulge of the inner side. High contact stress concentrates on left bulges. Von Mises stress distribution becomes uneven under medium pressure. Both von Mises stress and contact stress increase when precompression, medium pressure, and rubber hardness increase in static sealing. Biomimetic ring can avoid rolling and distortion in reciprocating dynamic seal, and its working life is much longer than O-ring and rectangular ring. The maximum von Mises stress and contact stress increase with the precompression, medium pressure, rubber hardness, and friction coefficient in reciprocating dynamic seal.http://dx.doi.org/10.1155/2015/358417
collection DOAJ
language English
format Article
sources DOAJ
author Chuanjun Han
Han Zhang
Jie Zhang
spellingShingle Chuanjun Han
Han Zhang
Jie Zhang
Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
Applied Bionics and Biomechanics
author_facet Chuanjun Han
Han Zhang
Jie Zhang
author_sort Chuanjun Han
title Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
title_short Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
title_full Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
title_fullStr Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
title_full_unstemmed Structural Design and Sealing Performance Analysis of Biomimetic Sealing Ring
title_sort structural design and sealing performance analysis of biomimetic sealing ring
publisher Hindawi Limited
series Applied Bionics and Biomechanics
issn 1176-2322
1754-2103
publishDate 2015-01-01
description In order to reduce the failure probability of rubber sealing rings in reciprocating dynamic seal, a new structure of sealing ring based on bionics was designed. The biomimetic ring has three concave ridges and convex bulges on each side which are very similar to earthworms. Bulges were circularly designed and sealing performances of the biomimetic ring in both static seal and dynamic seal were simulated by FEM. In addition, effects of precompression, medium pressure, speed, friction coefficient, and material parameters on sealing performances were discussed. The results show that von Mises stress of the biomimetic sealing ring distributed symmetrically in no-pressure static sealing. The maximum von Mises stress appears on the second bulge of the inner side. High contact stress concentrates on left bulges. Von Mises stress distribution becomes uneven under medium pressure. Both von Mises stress and contact stress increase when precompression, medium pressure, and rubber hardness increase in static sealing. Biomimetic ring can avoid rolling and distortion in reciprocating dynamic seal, and its working life is much longer than O-ring and rectangular ring. The maximum von Mises stress and contact stress increase with the precompression, medium pressure, rubber hardness, and friction coefficient in reciprocating dynamic seal.
url http://dx.doi.org/10.1155/2015/358417
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AT hanzhang structuraldesignandsealingperformanceanalysisofbiomimeticsealingring
AT jiezhang structuraldesignandsealingperformanceanalysisofbiomimeticsealingring
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