Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating

The aim of the present research is calculation and determination of the temperature distribution in the oxy-gas source line heating process for application in the steel plates. Analytical method was used to calculate the temperature distribution by solving mathematical equations. The temperature dis...

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Main Authors: S. R. Hosseini, M. Barati, E. Maghsoudi
Format: Article
Language:fas
Published: Isfahan University of Technology 2017-06-01
Series:Journal of Advanced Materials in Engineering
Subjects:
Online Access:http://jame.iut.ac.ir/browse.php?a_code=A-10-1-731&slc_lang=en&sid=1
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spelling doaj-4d3717e62d4846849d7c9ca44d8626112021-02-02T01:20:44ZfasIsfahan University of TechnologyJournal of Advanced Materials in Engineering1025-28512423-57332017-06-013615370Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line HeatingS. R. Hosseini0M. Barati1E. Maghsoudi2 Department of Materials Engineering, Maleke-Ashtar University of Technology, Isfahan, Iran Department of Materials Engineering, Maleke-Ashtar University of Technology, Isfahan, Iran Department of Materials Engineering, Maleke-Ashtar University of Technology, Isfahan, Iran The aim of the present research is calculation and determination of the temperature distribution in the oxy-gas source line heating process for application in the steel plates. Analytical method was used to calculate the temperature distribution by solving mathematical equations. The temperature distribution was determined with numerical method using MATLAB software. A computerized numerical control line heating apparatus was used for carrying out the processes. ITI thermograph camera was used to measure the temperature. The effect of torch distance, gas flow and torch speed on the temperature distribution at the upper and lower surfaces of plate were evaluated. The changes of temperature distribution were achieved at torch speeds of 120, 200 and 300 mm/min, gas flow of 10, 9 and 8 lit/min and torch distances of 30, 40 and 50 mm. Calculated and measured maximum temperatures reached to 900, 810 and 720 K, and 885, 785, 690 K, at torch speeds of 120, 200, 300 mm/min, respectively. The calculated and measured maximum temperatures at gas flow of 10, 9, 8 lit/min are attained to be 900, 810 and 750 K, and 885, 795 and 740 K, respectively. Maximum calculated and measured temperatures at torch distance of 30, 40 and 50 mm are accomplished to be 900, 880 and 810 K and 885, 840 and 790 K, respectively.  http://jame.iut.ac.ir/browse.php?a_code=A-10-1-731&slc_lang=en&sid=1Line heating Numerical modeling Temperature distribution Thermal forming
collection DOAJ
language fas
format Article
sources DOAJ
author S. R. Hosseini
M. Barati
E. Maghsoudi
spellingShingle S. R. Hosseini
M. Barati
E. Maghsoudi
Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
Journal of Advanced Materials in Engineering
Line heating
Numerical modeling
Temperature distribution
Thermal forming
author_facet S. R. Hosseini
M. Barati
E. Maghsoudi
author_sort S. R. Hosseini
title Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
title_short Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
title_full Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
title_fullStr Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
title_full_unstemmed Evaluation of Temperature Distribution in Thermal Forming Process of Steel Plate by Oxy-gas Source Line Heating
title_sort evaluation of temperature distribution in thermal forming process of steel plate by oxy-gas source line heating
publisher Isfahan University of Technology
series Journal of Advanced Materials in Engineering
issn 1025-2851
2423-5733
publishDate 2017-06-01
description The aim of the present research is calculation and determination of the temperature distribution in the oxy-gas source line heating process for application in the steel plates. Analytical method was used to calculate the temperature distribution by solving mathematical equations. The temperature distribution was determined with numerical method using MATLAB software. A computerized numerical control line heating apparatus was used for carrying out the processes. ITI thermograph camera was used to measure the temperature. The effect of torch distance, gas flow and torch speed on the temperature distribution at the upper and lower surfaces of plate were evaluated. The changes of temperature distribution were achieved at torch speeds of 120, 200 and 300 mm/min, gas flow of 10, 9 and 8 lit/min and torch distances of 30, 40 and 50 mm. Calculated and measured maximum temperatures reached to 900, 810 and 720 K, and 885, 785, 690 K, at torch speeds of 120, 200, 300 mm/min, respectively. The calculated and measured maximum temperatures at gas flow of 10, 9, 8 lit/min are attained to be 900, 810 and 750 K, and 885, 795 and 740 K, respectively. Maximum calculated and measured temperatures at torch distance of 30, 40 and 50 mm are accomplished to be 900, 880 and 810 K and 885, 840 and 790 K, respectively.  
topic Line heating
Numerical modeling
Temperature distribution
Thermal forming
url http://jame.iut.ac.ir/browse.php?a_code=A-10-1-731&slc_lang=en&sid=1
work_keys_str_mv AT srhosseini evaluationoftemperaturedistributioninthermalformingprocessofsteelplatebyoxygassourcelineheating
AT mbarati evaluationoftemperaturedistributioninthermalformingprocessofsteelplatebyoxygassourcelineheating
AT emaghsoudi evaluationoftemperaturedistributioninthermalformingprocessofsteelplatebyoxygassourcelineheating
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