Finite element analysis for components force of flexural rubber joint

Flexible rubber joint is an important connecting pipe fitting in ship and chemical industry. However, the problems existing in its application, especially the stress distribution for each component of rubber joint structure, were lack of theoretical analysis. Therefore the finite element model of ru...

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Main Authors: Hong HE, Xiaoqin Li, Gao Shenjun
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817503043
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spelling doaj-0224ec198a6a478fa08c9394e01c48542021-02-02T02:17:17ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011750304310.1051/matecconf/201817503043matecconf_ifcae-iot2018_03043Finite element analysis for components force of flexural rubber jointHong HEXiaoqin LiGao ShenjunFlexible rubber joint is an important connecting pipe fitting in ship and chemical industry. However, the problems existing in its application, especially the stress distribution for each component of rubber joint structure, were lack of theoretical analysis. Therefore the finite element model of rubber joint was established according to its structure in this study. With the help of software, the stress characteristics of rubber joint under the axial tension and periodic dynamic load were analysed with the standard maximum internal pressure load and flanges bolt pretension together. The calculation results showed that the order of maximum stress in rubber joint components from big to small was: reinforcement ring, cord layer and rubber skeleton. In order to reduce the stress value at the weak area in the rubber components, the angles of the cord were studied and found that when the cord angle were 60°/-60°for 1,3,5/2,4,6 layer respectively, the maximum stress value for the reinforcement ring and cord fabrics were reduced obviously. After the life computation by the software, it was confirmed that the cord angle arrangement 60°/-60°for cord layers could significantly improve the service life of the rubber joint.https://doi.org/10.1051/matecconf/201817503043
collection DOAJ
language English
format Article
sources DOAJ
author Hong HE
Xiaoqin Li
Gao Shenjun
spellingShingle Hong HE
Xiaoqin Li
Gao Shenjun
Finite element analysis for components force of flexural rubber joint
MATEC Web of Conferences
author_facet Hong HE
Xiaoqin Li
Gao Shenjun
author_sort Hong HE
title Finite element analysis for components force of flexural rubber joint
title_short Finite element analysis for components force of flexural rubber joint
title_full Finite element analysis for components force of flexural rubber joint
title_fullStr Finite element analysis for components force of flexural rubber joint
title_full_unstemmed Finite element analysis for components force of flexural rubber joint
title_sort finite element analysis for components force of flexural rubber joint
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Flexible rubber joint is an important connecting pipe fitting in ship and chemical industry. However, the problems existing in its application, especially the stress distribution for each component of rubber joint structure, were lack of theoretical analysis. Therefore the finite element model of rubber joint was established according to its structure in this study. With the help of software, the stress characteristics of rubber joint under the axial tension and periodic dynamic load were analysed with the standard maximum internal pressure load and flanges bolt pretension together. The calculation results showed that the order of maximum stress in rubber joint components from big to small was: reinforcement ring, cord layer and rubber skeleton. In order to reduce the stress value at the weak area in the rubber components, the angles of the cord were studied and found that when the cord angle were 60°/-60°for 1,3,5/2,4,6 layer respectively, the maximum stress value for the reinforcement ring and cord fabrics were reduced obviously. After the life computation by the software, it was confirmed that the cord angle arrangement 60°/-60°for cord layers could significantly improve the service life of the rubber joint.
url https://doi.org/10.1051/matecconf/201817503043
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AT xiaoqinli finiteelementanalysisforcomponentsforceofflexuralrubberjoint
AT gaoshenjun finiteelementanalysisforcomponentsforceofflexuralrubberjoint
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