THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE

Some external pressurized thin walled cylindrical shells could only be stiffened by small stiffening rings due to structural limitations. Such stiffening rings can only partially stiffen the cylinder which is less effective than big stiffening rings.Eigenvalue buckling analysis was done for a series...

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Main Authors: ZHU Yan, WANG ChuanZhi, DONG JunHua, GAO BingJun
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2016-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.04.026
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author ZHU Yan
WANG ChuanZhi
DONG JunHua
GAO BingJun
author_facet ZHU Yan
WANG ChuanZhi
DONG JunHua
GAO BingJun
author_sort ZHU Yan
collection DOAJ
description Some external pressurized thin walled cylindrical shells could only be stiffened by small stiffening rings due to structural limitations. Such stiffening rings can only partially stiffen the cylinder which is less effective than big stiffening rings.Eigenvalue buckling analysis was done for a series of external pressurized thin walled cylindrical shells with various stiffening rings,which demonstrates two different types of buckling mode according to stiffening ring dimensions. When the stiffening ring is strong enough,buckling occurs only in the cylindrical shell with wave number bigger than 3,and the critical external pressure is irrelevant to the dimension of the stiffening ring,which should be defined as strong stiffening structure,and the ring as strong stiffening ring. However,when the stiffening ring is small,buckling occurs in both the cylindrical shell and the stiffening ring with wave number changing from 3 to 2 as the stiffening ring gets stronger,and the critical external pressure increases with the dimension of the stiffening ring,which should be defined as weak stiffening structure,and the ring as small stiffening ring. By parametric study,the design boundary curve was worked out for the weak and strong stiffening structures. For the weak stiffening structure,the design boundary curves have been also worked out to separate the 2 waves and 3 waves buckling. Empirical formulae were given out for the weak stiffening structures. Compared with the allowable external pressure given by the approximate calculation of HG / T20582-2011,the result by the suggested method is about 100% <sup> </sup>450% higher,which is in favor of light weight design of structures.
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spelling doaj-art-1fc8e9d873374bb18e31ca90c5aed2ca2025-01-15T02:36:19ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692016-01-013881181530596064THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSUREZHU YanWANG ChuanZhiDONG JunHuaGAO BingJunSome external pressurized thin walled cylindrical shells could only be stiffened by small stiffening rings due to structural limitations. Such stiffening rings can only partially stiffen the cylinder which is less effective than big stiffening rings.Eigenvalue buckling analysis was done for a series of external pressurized thin walled cylindrical shells with various stiffening rings,which demonstrates two different types of buckling mode according to stiffening ring dimensions. When the stiffening ring is strong enough,buckling occurs only in the cylindrical shell with wave number bigger than 3,and the critical external pressure is irrelevant to the dimension of the stiffening ring,which should be defined as strong stiffening structure,and the ring as strong stiffening ring. However,when the stiffening ring is small,buckling occurs in both the cylindrical shell and the stiffening ring with wave number changing from 3 to 2 as the stiffening ring gets stronger,and the critical external pressure increases with the dimension of the stiffening ring,which should be defined as weak stiffening structure,and the ring as small stiffening ring. By parametric study,the design boundary curve was worked out for the weak and strong stiffening structures. For the weak stiffening structure,the design boundary curves have been also worked out to separate the 2 waves and 3 waves buckling. Empirical formulae were given out for the weak stiffening structures. Compared with the allowable external pressure given by the approximate calculation of HG / T20582-2011,the result by the suggested method is about 100% <sup> </sup>450% higher,which is in favor of light weight design of structures.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.04.026External pressureThin walled cylindrical shellStiffening ringWeak stiffeningBuckling pressure
spellingShingle ZHU Yan
WANG ChuanZhi
DONG JunHua
GAO BingJun
THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
Jixie qiangdu
External pressure
Thin walled cylindrical shell
Stiffening ring
Weak stiffening
Buckling pressure
title THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
title_full THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
title_fullStr THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
title_full_unstemmed THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
title_short THE WEAK STIFFENING STRUCTURE OF EXTERNAL PRESSURIZED THIN WALLED CYLINDRICAL SHELL AND DETERMINATION OF ITS CRITICAL EXTERNAL PRESSURE
title_sort weak stiffening structure of external pressurized thin walled cylindrical shell and determination of its critical external pressure
topic External pressure
Thin walled cylindrical shell
Stiffening ring
Weak stiffening
Buckling pressure
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.04.026
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