Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber

The demand for high-temperature-resistant metal rubber seals (MRSs) with a large ring-to-diameter ratio is increasing. In this work, an O-type MRS with a large ring-to-diameter ratio was developed by embedding a spiral network metal rubber into a stainless-steel ring with a special preparation proce...

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Main Authors: Xiaoyuan Zheng, Wei Huang, Zhiying Ren, Yangyang Yang, Hongbai Bai, Yi Liang, Chunhong Lu
Format: Article
Language:English
Published: IOP Publishing 2022-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/ac443b
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author Xiaoyuan Zheng
Wei Huang
Zhiying Ren
Yangyang Yang
Hongbai Bai
Yi Liang
Chunhong Lu
author_facet Xiaoyuan Zheng
Wei Huang
Zhiying Ren
Yangyang Yang
Hongbai Bai
Yi Liang
Chunhong Lu
author_sort Xiaoyuan Zheng
collection DOAJ
description The demand for high-temperature-resistant metal rubber seals (MRSs) with a large ring-to-diameter ratio is increasing. In this work, an O-type MRS with a large ring-to-diameter ratio was developed by embedding a spiral network metal rubber into a stainless-steel ring with a special preparation process. The effects of the frequency, porosity, and amplitude on the dynamic performance of this O-type MRS were studied in detail. The mechanical properties of the MRS were characterized through dynamic tests, and the damping sensitivity was analyzed using orthogonal tests. The results show that the MRS has a better stability under different vibration frequencies. The energy consumption and loss factor of the sample increase with increasing porosity. With an increase in the loading amplitude, the energy consumption and loss factor of the test samples with the same porosity increase, whereas the dynamic average stiffness of the specimen gradually decreases. Furthermore, the range analysis of the orthogonal experiment shows that the factors affecting the damping performance of the seal are in the following order: porosity > amplitude > frequency. This study presents the dynamic mechanical properties of O-shaped MRSs with a large ring-to-diameter ratio and provides a foundation for their engineering application.
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spelling doaj.art-b8472968790b4242840ba3338704849f2023-08-09T16:00:00ZengIOP PublishingMaterials Research Express2053-15912022-01-019505651310.1088/2053-1591/ac443bStudy on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubberXiaoyuan Zheng0Wei Huang1Zhiying Ren2https://orcid.org/0000-0001-7460-3849Yangyang Yang3Hongbai Bai4Yi Liang5Chunhong Lu6College of Mechanical Engineering and Automation, Institute of Metal Rubber & Vibration Noise, Fuzhou University , Fuzhou 350116, People’s Republic of ChinaFujian Special Equipment Inspection and Research Institute, Fuzhou 350008, People’s Republic of ChinaCollege of Mechanical Engineering and Automation, Institute of Metal Rubber & Vibration Noise, Fuzhou University , Fuzhou 350116, People’s Republic of ChinaCollege of Mechanical Engineering and Automation, Institute of Metal Rubber & Vibration Noise, Fuzhou University , Fuzhou 350116, People’s Republic of ChinaCollege of Mechanical Engineering and Automation, Institute of Metal Rubber & Vibration Noise, Fuzhou University , Fuzhou 350116, People’s Republic of ChinaCollege of Mechanical Engineering and Automation, Institute of Metal Rubber & Vibration Noise, Fuzhou University , Fuzhou 350116, People’s Republic of ChinaDepartment of Automotive Engineering, Hebei College of Industry and Technology , Shijiazhuang 050091, People’s Republic of ChinaThe demand for high-temperature-resistant metal rubber seals (MRSs) with a large ring-to-diameter ratio is increasing. In this work, an O-type MRS with a large ring-to-diameter ratio was developed by embedding a spiral network metal rubber into a stainless-steel ring with a special preparation process. The effects of the frequency, porosity, and amplitude on the dynamic performance of this O-type MRS were studied in detail. The mechanical properties of the MRS were characterized through dynamic tests, and the damping sensitivity was analyzed using orthogonal tests. The results show that the MRS has a better stability under different vibration frequencies. The energy consumption and loss factor of the sample increase with increasing porosity. With an increase in the loading amplitude, the energy consumption and loss factor of the test samples with the same porosity increase, whereas the dynamic average stiffness of the specimen gradually decreases. Furthermore, the range analysis of the orthogonal experiment shows that the factors affecting the damping performance of the seal are in the following order: porosity > amplitude > frequency. This study presents the dynamic mechanical properties of O-shaped MRSs with a large ring-to-diameter ratio and provides a foundation for their engineering application.https://doi.org/10.1088/2053-1591/ac443bMRSlarge ring-to-diameter ratioparameter identificationporosity
spellingShingle Xiaoyuan Zheng
Wei Huang
Zhiying Ren
Yangyang Yang
Hongbai Bai
Yi Liang
Chunhong Lu
Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
Materials Research Express
MRS
large ring-to-diameter ratio
parameter identification
porosity
title Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
title_full Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
title_fullStr Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
title_full_unstemmed Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
title_short Study on dynamic mechanical properties of O-ring with large ring diameter ratio based on metal rubber
title_sort study on dynamic mechanical properties of o ring with large ring diameter ratio based on metal rubber
topic MRS
large ring-to-diameter ratio
parameter identification
porosity
url https://doi.org/10.1088/2053-1591/ac443b
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