Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression

This paper presents the numerical investigation results focusing on the buckling behavior of geometrically imperfect cylinder-cone-cylinder transition subjected to axial compression. The models are assumed to be made from unalloyed mild steel. Several initial geometric imperfections techniques such...

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Main Authors: Ifayefunmi, Olawale Friday, Ismail, Mohd Shahrom, Sheikh Md Fadzullah, Siti Hajar
Format: Article
Language:English
Published: Elsevier Ltd 2019
Online Access:http://eprints.utem.edu.my/id/eprint/24582/2/BUCKLING%20OF%20IMPERFECT%20CYLINDER-CONE-CYLINDER%20TRANSITION%20UNDER%20AXIALCOMPRESSION.PDF
http://eprints.utem.edu.my/id/eprint/24582/
https://reader.elsevier.com/reader/sd/pii/S0263823118315246?token=E8AFAFCBB9315800AD44FC3198EBB2486F8D3B280D6BD4F9CEC22F4F7A0AA23431BDB712A3CA3FF396832E562A6B1A1C
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Institution: Universiti Teknikal Malaysia Melaka
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spelling my.utem.eprints.245822020-12-22T12:39:56Z http://eprints.utem.edu.my/id/eprint/24582/ Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression Ifayefunmi, Olawale Friday Ismail, Mohd Shahrom Sheikh Md Fadzullah, Siti Hajar This paper presents the numerical investigation results focusing on the buckling behavior of geometrically imperfect cylinder-cone-cylinder transition subjected to axial compression. The models are assumed to be made from unalloyed mild steel. Several initial geometric imperfections techniques such as (i) Eigenmode imperfection approach, (ii) Axisymmetric outward bulge and (iii) Single Perturbation Load Analysis (SPLA) imperfections were superimposed on the perfect cylinder-cone-cylinder shell. Reduction of the buckling strength was then quantified numerically. As expected, the buckling strength of cylinder-cone-cylinder shells was strongly affected by initial geometric imperfection and the reduction in buckling strength was seen to be strongly dependent on the approach and the location of imperfection. Eigenmode imperfection is seen to produce the lowest knockdown factor, followed by axisymmetric outward bulge and SPLA imperfections, respectively. Finally, the lower bound knockdown factors that can be implemented for design purposes has been proposed for the worst initial geometric imperfection case, i.e., Eigenmode, imperfections. Elsevier Ltd 2019-11 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/24582/2/BUCKLING%20OF%20IMPERFECT%20CYLINDER-CONE-CYLINDER%20TRANSITION%20UNDER%20AXIALCOMPRESSION.PDF Ifayefunmi, Olawale Friday and Ismail, Mohd Shahrom and Sheikh Md Fadzullah, Siti Hajar (2019) Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression. Thin-Walled Structures, 144. 01-11. ISSN 0263-8231 https://reader.elsevier.com/reader/sd/pii/S0263823118315246?token=E8AFAFCBB9315800AD44FC3198EBB2486F8D3B280D6BD4F9CEC22F4F7A0AA23431BDB712A3CA3FF396832E562A6B1A1C 10.1016/j.tws.2019.106250
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description This paper presents the numerical investigation results focusing on the buckling behavior of geometrically imperfect cylinder-cone-cylinder transition subjected to axial compression. The models are assumed to be made from unalloyed mild steel. Several initial geometric imperfections techniques such as (i) Eigenmode imperfection approach, (ii) Axisymmetric outward bulge and (iii) Single Perturbation Load Analysis (SPLA) imperfections were superimposed on the perfect cylinder-cone-cylinder shell. Reduction of the buckling strength was then quantified numerically. As expected, the buckling strength of cylinder-cone-cylinder shells was strongly affected by initial geometric imperfection and the reduction in buckling strength was seen to be strongly dependent on the approach and the location of imperfection. Eigenmode imperfection is seen to produce the lowest knockdown factor, followed by axisymmetric outward bulge and SPLA imperfections, respectively. Finally, the lower bound knockdown factors that can be implemented for design purposes has been proposed for the worst initial geometric imperfection case, i.e., Eigenmode, imperfections.
format Article
author Ifayefunmi, Olawale Friday
Ismail, Mohd Shahrom
Sheikh Md Fadzullah, Siti Hajar
spellingShingle Ifayefunmi, Olawale Friday
Ismail, Mohd Shahrom
Sheikh Md Fadzullah, Siti Hajar
Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
author_facet Ifayefunmi, Olawale Friday
Ismail, Mohd Shahrom
Sheikh Md Fadzullah, Siti Hajar
author_sort Ifayefunmi, Olawale Friday
title Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
title_short Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
title_full Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
title_fullStr Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
title_full_unstemmed Buckling Of Imperfect Cylinder-Cone-Cylinder Transition Under Axial Compression
title_sort buckling of imperfect cylinder-cone-cylinder transition under axial compression
publisher Elsevier Ltd
publishDate 2019
url http://eprints.utem.edu.my/id/eprint/24582/2/BUCKLING%20OF%20IMPERFECT%20CYLINDER-CONE-CYLINDER%20TRANSITION%20UNDER%20AXIALCOMPRESSION.PDF
http://eprints.utem.edu.my/id/eprint/24582/
https://reader.elsevier.com/reader/sd/pii/S0263823118315246?token=E8AFAFCBB9315800AD44FC3198EBB2486F8D3B280D6BD4F9CEC22F4F7A0AA23431BDB712A3CA3FF396832E562A6B1A1C
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