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Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube

In recent times, particularly in applications used to build various structures for construction purposes or machines, solid sections have been gradually replaced by hollow sections due to their attractive features such as being light weight and having high specific strength. In the present investiga...

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Autores principales: Radhakrishnan, Ganesh, Breaz, Daniel, Al Khusaibi, Sami Sulaiman, Al Subaihi, Amjad Juma, Al Ismaili, Al Azhar Zahir, AlMaani, AlSalt Malik, Karthikeyan, Kadhavoor R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9967977/
https://www.ncbi.nlm.nih.gov/pubmed/36837122
http://dx.doi.org/10.3390/ma16041492
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author Radhakrishnan, Ganesh
Breaz, Daniel
Al Khusaibi, Sami Sulaiman
Al Subaihi, Amjad Juma
Al Ismaili, Al Azhar Zahir
AlMaani, AlSalt Malik
Karthikeyan, Kadhavoor R.
author_facet Radhakrishnan, Ganesh
Breaz, Daniel
Al Khusaibi, Sami Sulaiman
Al Subaihi, Amjad Juma
Al Ismaili, Al Azhar Zahir
AlMaani, AlSalt Malik
Karthikeyan, Kadhavoor R.
author_sort Radhakrishnan, Ganesh
collection PubMed
description In recent times, particularly in applications used to build various structures for construction purposes or machines, solid sections have been gradually replaced by hollow sections due to their attractive features such as being light weight and having high specific strength. In the present investigation, an attempt was made to investigate, in detail, the flexural capability of aluminium hollow tubes (AHTs) with square cross-sections. The objective of the investigation was to study the influence of stress concentration on the flexural behaviour of the hollow tube. The stress concentration factor considered in this investigation was holes of various cross-sections and quantities. Three-point bending tests with concentrated loads were conducted on specimens of a hollow tube with different stress concentrations such as circular holes, multiple circular holes, square holes and perforations. The load was applied manually during the bending test with appropriate increments. The bending test was carried out on specimens with support spans of 110, 130, 170 and 200 mm. The output measures of the study were maximum bending load, deflection and flexural stiffness. The output measures were analysed in detail in order to recommend the type and nature of stress concentration in a hollow tube applied to structural applications to ensure the safest workability. The flexural stability of the tube was analysed by experimental and numerical procedures, and the results were validated using an analytical approach. It was found that the results of all the approaches complement each other with a low significance of error. AHTs with a circular hole, multiple circular holes and perforations were observed to have better flexural stability than other AHTs such as AHTs with square hole and plain AHTs.
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spelling pubmed-99679772023-02-27 Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube Radhakrishnan, Ganesh Breaz, Daniel Al Khusaibi, Sami Sulaiman Al Subaihi, Amjad Juma Al Ismaili, Al Azhar Zahir AlMaani, AlSalt Malik Karthikeyan, Kadhavoor R. Materials (Basel) Article In recent times, particularly in applications used to build various structures for construction purposes or machines, solid sections have been gradually replaced by hollow sections due to their attractive features such as being light weight and having high specific strength. In the present investigation, an attempt was made to investigate, in detail, the flexural capability of aluminium hollow tubes (AHTs) with square cross-sections. The objective of the investigation was to study the influence of stress concentration on the flexural behaviour of the hollow tube. The stress concentration factor considered in this investigation was holes of various cross-sections and quantities. Three-point bending tests with concentrated loads were conducted on specimens of a hollow tube with different stress concentrations such as circular holes, multiple circular holes, square holes and perforations. The load was applied manually during the bending test with appropriate increments. The bending test was carried out on specimens with support spans of 110, 130, 170 and 200 mm. The output measures of the study were maximum bending load, deflection and flexural stiffness. The output measures were analysed in detail in order to recommend the type and nature of stress concentration in a hollow tube applied to structural applications to ensure the safest workability. The flexural stability of the tube was analysed by experimental and numerical procedures, and the results were validated using an analytical approach. It was found that the results of all the approaches complement each other with a low significance of error. AHTs with a circular hole, multiple circular holes and perforations were observed to have better flexural stability than other AHTs such as AHTs with square hole and plain AHTs. MDPI 2023-02-10 /pmc/articles/PMC9967977/ /pubmed/36837122 http://dx.doi.org/10.3390/ma16041492 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Radhakrishnan, Ganesh
Breaz, Daniel
Al Khusaibi, Sami Sulaiman
Al Subaihi, Amjad Juma
Al Ismaili, Al Azhar Zahir
AlMaani, AlSalt Malik
Karthikeyan, Kadhavoor R.
Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title_full Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title_fullStr Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title_full_unstemmed Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title_short Experimental and Numerical Study on the Influence of Stress Concentration on the Flexural Stability of an Aluminium Hollow Tube
title_sort experimental and numerical study on the influence of stress concentration on the flexural stability of an aluminium hollow tube
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9967977/
https://www.ncbi.nlm.nih.gov/pubmed/36837122
http://dx.doi.org/10.3390/ma16041492
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