Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel

In the present work, thermal diffusivity and heat capacity measurements have been investigated in temperature range between RT and 1473 K for different duplex stainless steel supplied by Outokumpu Stainless AB, Sweden. The purpose of this study is to get a reliable thermophysical data of these alloy...

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Main Authors: Riad Harwill Abdul Abas, Nabil Kadhim Taieh
Format: Article
Language:English
Published: Al-Khwarizmi College of Engineering – University of Baghdad 2015-06-01
Series:Al-Khawarizmi Engineering Journal
Online Access:http://www.iasj.net/iasj?func=fulltext&aId=101544
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spelling doaj-547d43f89ee54766985216b013b830b62020-11-25T01:08:09Zeng Al-Khwarizmi College of Engineering – University of BaghdadAl-Khawarizmi Engineering Journal1818-11712015-06-011125161Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel Riad Harwill Abdul Abas0Nabil Kadhim Taieh 1SwedenTechnical Institute/ KutIn the present work, thermal diffusivity and heat capacity measurements have been investigated in temperature range between RT and 1473 K for different duplex stainless steel supplied by Outokumpu Stainless AB, Sweden. The purpose of this study is to get a reliable thermophysical data of these alloys and to study the effect of microstructure on the thermal diffusivity and heat capacity value. Results show the ferrite content in the duplex stainless steel increased with temperature at equilibrium state. On the other hand, ferrite content increased with increasing Cr/Ni ratio and there is no significant effect of ferrite content on the thermal diffusivity value at room temperature. Furthermore, the heat capacity of all samples increases with temperature from room temperature to 473 K, while it decreases with increasing temperature until 1073 K. Then it increases with temperature at higher temperature. Curie temperature and sigma phase formation temperature can be detected by heat capacity-temperature curves.http://www.iasj.net/iasj?func=fulltext&aId=101544
collection DOAJ
language English
format Article
sources DOAJ
author Riad Harwill Abdul Abas
Nabil Kadhim Taieh
spellingShingle Riad Harwill Abdul Abas
Nabil Kadhim Taieh
Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
Al-Khawarizmi Engineering Journal
author_facet Riad Harwill Abdul Abas
Nabil Kadhim Taieh
author_sort Riad Harwill Abdul Abas
title Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
title_short Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
title_full Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
title_fullStr Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
title_full_unstemmed Experimental Study of the Thermal Diffusivity and Heat Capacity Concerning Some Duplex Stainless Steel
title_sort experimental study of the thermal diffusivity and heat capacity concerning some duplex stainless steel
publisher Al-Khwarizmi College of Engineering – University of Baghdad
series Al-Khawarizmi Engineering Journal
issn 1818-1171
publishDate 2015-06-01
description In the present work, thermal diffusivity and heat capacity measurements have been investigated in temperature range between RT and 1473 K for different duplex stainless steel supplied by Outokumpu Stainless AB, Sweden. The purpose of this study is to get a reliable thermophysical data of these alloys and to study the effect of microstructure on the thermal diffusivity and heat capacity value. Results show the ferrite content in the duplex stainless steel increased with temperature at equilibrium state. On the other hand, ferrite content increased with increasing Cr/Ni ratio and there is no significant effect of ferrite content on the thermal diffusivity value at room temperature. Furthermore, the heat capacity of all samples increases with temperature from room temperature to 473 K, while it decreases with increasing temperature until 1073 K. Then it increases with temperature at higher temperature. Curie temperature and sigma phase formation temperature can be detected by heat capacity-temperature curves.
url http://www.iasj.net/iasj?func=fulltext&aId=101544
work_keys_str_mv AT riadharwillabdulabas experimentalstudyofthethermaldiffusivityandheatcapacityconcerningsomeduplexstainlesssteel
AT nabilkadhimtaieh experimentalstudyofthethermaldiffusivityandheatcapacityconcerningsomeduplexstainlesssteel
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