MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE
Laminated structure is becoming more popular in cookware markets; however, there seems to be a lack of enough scientific studies to evaluate its pros and cons, and to show that how it functions. A numerical model using a finite element method with temperature-dependent material properties has been p...
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Format: | Article |
Language: | English |
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Taylor's University
2017-09-01
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Series: | Journal of Engineering Science and Technology |
Subjects: | |
Online Access: | http://jestec.taylors.edu.my/Vol%2012%20issue%209%20September%202017/12_9_3.pdf |
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author | MOHAMMADREZA SEDIGH HESAMODDIN SALARIAN HESSAM TAHERIAN |
author_facet | MOHAMMADREZA SEDIGH HESAMODDIN SALARIAN HESSAM TAHERIAN |
author_sort | MOHAMMADREZA SEDIGH |
collection | DOAJ |
description | Laminated structure is becoming more popular in cookware markets; however, there seems to be a lack of enough scientific studies to evaluate its pros and cons, and to show that how it functions. A numerical model using a finite element method with temperature-dependent material properties has been performed to investigate material and layer dependence of temperature distribution in multi-layer multi-metal plate exposed to irregular heating. Behavior of two parameters including mean temperature value and uniformity on the inner surface of plate under variations of thermal properties and geometrical conditions have been studied. The results indicate that conductive metals used as first layer in bi-layer plates have better thermal performance than
those used in the second layer. In addition, since cookware manufacturers increasingly prefer to use all-clad aluminium plate, recently, this structure is analysed in the present study as well. The results show all-clad copper and aluminum plate possesses lower temperature gradient compared with single layer aluminum and all-clad aluminum core plates. |
first_indexed | 2024-04-12T19:32:41Z |
format | Article |
id | doaj.art-0c9434796600442d82675418d1eb4262 |
institution | Directory Open Access Journal |
issn | 1823-4690 |
language | English |
last_indexed | 2024-04-12T19:32:41Z |
publishDate | 2017-09-01 |
publisher | Taylor's University |
record_format | Article |
series | Journal of Engineering Science and Technology |
spelling | doaj.art-0c9434796600442d82675418d1eb42622022-12-22T03:19:17ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902017-09-0112923332345MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWAREMOHAMMADREZA SEDIGH0HESAMODDIN SALARIAN1 HESSAM TAHERIAN2Sama Technical and Vocational Training College, Islamic Azad University, Nour Branch, Nour, IranDepartment of Mechanical Engineering, Islamic Azad University, Nour Branch, Nour, IranDepartment of Mechanical Engineering, University of Alabama at Birmingham, Birmingham, AL 35294, United StatesLaminated structure is becoming more popular in cookware markets; however, there seems to be a lack of enough scientific studies to evaluate its pros and cons, and to show that how it functions. A numerical model using a finite element method with temperature-dependent material properties has been performed to investigate material and layer dependence of temperature distribution in multi-layer multi-metal plate exposed to irregular heating. Behavior of two parameters including mean temperature value and uniformity on the inner surface of plate under variations of thermal properties and geometrical conditions have been studied. The results indicate that conductive metals used as first layer in bi-layer plates have better thermal performance than those used in the second layer. In addition, since cookware manufacturers increasingly prefer to use all-clad aluminium plate, recently, this structure is analysed in the present study as well. The results show all-clad copper and aluminum plate possesses lower temperature gradient compared with single layer aluminum and all-clad aluminum core plates.http://jestec.taylors.edu.my/Vol%2012%20issue%209%20September%202017/12_9_3.pdfLaminated plateMulti-metal plateConductionTemperature distributionCookware |
spellingShingle | MOHAMMADREZA SEDIGH HESAMODDIN SALARIAN HESSAM TAHERIAN MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE Journal of Engineering Science and Technology Laminated plate Multi-metal plate Conduction Temperature distribution Cookware |
title | MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE |
title_full | MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE |
title_fullStr | MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE |
title_full_unstemmed | MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE |
title_short | MATERIAL DEPENDENCE OF TEMPERATURE DISTRIBUTION IN MULTI-LAYER MULTI-METAL COOKWARE |
title_sort | material dependence of temperature distribution in multi layer multi metal cookware |
topic | Laminated plate Multi-metal plate Conduction Temperature distribution Cookware |
url | http://jestec.taylors.edu.my/Vol%2012%20issue%209%20September%202017/12_9_3.pdf |
work_keys_str_mv | AT mohammadrezasedigh materialdependenceoftemperaturedistributioninmultilayermultimetalcookware AT hesamoddinsalarian materialdependenceoftemperaturedistributioninmultilayermultimetalcookware AT hessamtaherian materialdependenceoftemperaturedistributioninmultilayermultimetalcookware |