Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303

This paper has investigated experimentally the dynamic buckling behavior of AISI 303 stainless steel Aluminized and as received long columns. These columns, hot-dip aluminized and as received, are tested under dynamic buckling, 22 specimens, without aluminizing (type 1), and 50 specimens, with hot-...

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Autores principales: Ahmed Naïf Al-Khazraji, Samir Ali Al-Rabii, Hameed Shamkhi Al-Khazalli
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Publicado: Al-Khwarizmi College of Engineering – University of Baghdad 2016
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Acceso en línea:https://doaj.org/article/a3ebcc13d2af4ceabb6a7ad906ba5bd5
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spelling oai:doaj.org-article:a3ebcc13d2af4ceabb6a7ad906ba5bd52021-12-02T10:53:32ZEnhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 3031818-11712312-0789https://doaj.org/article/a3ebcc13d2af4ceabb6a7ad906ba5bd52016-03-01T00:00:00Zhttp://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/279https://doaj.org/toc/1818-1171https://doaj.org/toc/2312-0789 This paper has investigated experimentally the dynamic buckling behavior of AISI 303 stainless steel Aluminized and as received long columns. These columns, hot-dip aluminized and as received, are tested under dynamic buckling, 22 specimens, without aluminizing (type 1), and 50 specimens, with hot-dip aluminizing at different aluminizing conditions of dipping temperature and dipping time (type 2), are tested under dynamic compression loading and under dynamic combined loading (compression and bending) by using a rotating buckling test machine. The experimental results are compared with Perry Robertson interaction formula that used for long columns. Greenhill formula is used to get a mathematical model that descripts the buckling behavior of the specimens of type (1) under dynamic compression loading. The experimental results obtained show an advantageous influence of hot-dip aluminizing treatment on dynamic buckling behavior of AISI 303 stainless steel long columns. The improvement based on the average value of critical buckling stress, are as follow: (64.8 %) for long columns type (2), compared with columns type (1), under dynamic compression loading, and (56.6 %) for long columns type (2), compared with columns type (1), under dynamic combined loading, and (33.3 %) for long columns type (2) compared with Perry Robertson critical buckling stress. Ahmed Naïf Al-KhazrajiSamir Ali Al-RabiiHameed Shamkhi Al-KhazalliAl-Khwarizmi College of Engineering – University of BaghdadarticleDynamic bucklinghot-dip Aluminizinglong columnsAISI 303 stainless steelChemical engineeringTP155-156Engineering (General). Civil engineering (General)TA1-2040ENAl-Khawarizmi Engineering Journal, Vol 12, Iss 1 (2016)
institution DOAJ
collection DOAJ
language EN
topic Dynamic buckling
hot-dip Aluminizing
long columns
AISI 303 stainless steel
Chemical engineering
TP155-156
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Dynamic buckling
hot-dip Aluminizing
long columns
AISI 303 stainless steel
Chemical engineering
TP155-156
Engineering (General). Civil engineering (General)
TA1-2040
Ahmed Naïf Al-Khazraji
Samir Ali Al-Rabii
Hameed Shamkhi Al-Khazalli
Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
description This paper has investigated experimentally the dynamic buckling behavior of AISI 303 stainless steel Aluminized and as received long columns. These columns, hot-dip aluminized and as received, are tested under dynamic buckling, 22 specimens, without aluminizing (type 1), and 50 specimens, with hot-dip aluminizing at different aluminizing conditions of dipping temperature and dipping time (type 2), are tested under dynamic compression loading and under dynamic combined loading (compression and bending) by using a rotating buckling test machine. The experimental results are compared with Perry Robertson interaction formula that used for long columns. Greenhill formula is used to get a mathematical model that descripts the buckling behavior of the specimens of type (1) under dynamic compression loading. The experimental results obtained show an advantageous influence of hot-dip aluminizing treatment on dynamic buckling behavior of AISI 303 stainless steel long columns. The improvement based on the average value of critical buckling stress, are as follow: (64.8 %) for long columns type (2), compared with columns type (1), under dynamic compression loading, and (56.6 %) for long columns type (2), compared with columns type (1), under dynamic combined loading, and (33.3 %) for long columns type (2) compared with Perry Robertson critical buckling stress.
format article
author Ahmed Naïf Al-Khazraji
Samir Ali Al-Rabii
Hameed Shamkhi Al-Khazalli
author_facet Ahmed Naïf Al-Khazraji
Samir Ali Al-Rabii
Hameed Shamkhi Al-Khazalli
author_sort Ahmed Naïf Al-Khazraji
title Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
title_short Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
title_full Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
title_fullStr Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
title_full_unstemmed Enhancement of Buckling Resistance of Aluminized Long Columns of Stainless Steel AISI 303
title_sort enhancement of buckling resistance of aluminized long columns of stainless steel aisi 303
publisher Al-Khwarizmi College of Engineering – University of Baghdad
publishDate 2016
url https://doaj.org/article/a3ebcc13d2af4ceabb6a7ad906ba5bd5
work_keys_str_mv AT ahmednaifalkhazraji enhancementofbucklingresistanceofaluminizedlongcolumnsofstainlesssteelaisi303
AT samiralialrabii enhancementofbucklingresistanceofaluminizedlongcolumnsofstainlesssteelaisi303
AT hameedshamkhialkhazalli enhancementofbucklingresistanceofaluminizedlongcolumnsofstainlesssteelaisi303
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