Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process

In hot stamping, one of the key factor for successful process control as well as producing a final part strength of more than 1500 MPa is the ability to control heat transfer from the blank throughout the process especially during quenching where the blank need to be cooled down rapidly to transform...

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Main Author: Mohd Ali Hanafiah, Shaharudin
Format: Thesis
Language:English
Published: 2014
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Online Access:http://umpir.ump.edu.my/id/eprint/13164/1/FKP%20-%20MOHD%20ALI%20HANAFIAH%20SHAHARUDIN%20-%20CD%209603.pdf
http://umpir.ump.edu.my/id/eprint/13164/
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Institution: Universiti Malaysia Pahang Al-Sultan Abdullah
Language: English
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spelling my.ump.umpir.131642021-08-26T03:54:21Z http://umpir.ump.edu.my/id/eprint/13164/ Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process Mohd Ali Hanafiah, Shaharudin T Technology (General) TS Manufactures In hot stamping, one of the key factor for successful process control as well as producing a final part strength of more than 1500 MPa is the ability to control heat transfer from the blank throughout the process especially during quenching where the blank need to be cooled down rapidly to transform it’s microstructure into martensite phase. In order to control heat transfer process, a study need to be carried out for understanding the characteristics of heat transfer between two solid bodies in contact to each other and investigates the influence of applied pressure to the heat transfer as well as optimizing its. To do so, a systematic approach has been planned to analyze the heat transfer using finite element analysis (FEA) using commercial simulation software as well as the experimental work. The FEA is done by simulating the heated blank or the specimen cool down as it brought into contact to the tools which has a temperature slightly lower than ambient temperature. The effect of different values of applied pressure is simulates by manipulating the values of thermal contact conductance at the blank and tool surface in contact and the thermal contact conductance values will be simulates ranging in between 1000 to 2000 W/m2K. Meanwhile, the experiment being conducted to measure temperature changes of the blank and tool as it is compress in between a set of experimental tool (upper and lower tool) at different pressure ranging between 5 to 35 MPa. The experiment results will be used to compute the actual thermal contact conductance and compared with the FEA simulation. Based on these analyzed result from both approach, the influence of the applied pressure to the heat transfer between two solid bodies in contact as well as the optimum value of applied pressure possibly defined. 2014-08 Thesis NonPeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/13164/1/FKP%20-%20MOHD%20ALI%20HANAFIAH%20SHAHARUDIN%20-%20CD%209603.pdf Mohd Ali Hanafiah, Shaharudin (2014) Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process. Masters thesis, Universiti Malaysia Pahang (Contributors, UNSPECIFIED: UNSPECIFIED).
institution Universiti Malaysia Pahang Al-Sultan Abdullah
building UMPSA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang Al-Sultan Abdullah
content_source UMPSA Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic T Technology (General)
TS Manufactures
spellingShingle T Technology (General)
TS Manufactures
Mohd Ali Hanafiah, Shaharudin
Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
description In hot stamping, one of the key factor for successful process control as well as producing a final part strength of more than 1500 MPa is the ability to control heat transfer from the blank throughout the process especially during quenching where the blank need to be cooled down rapidly to transform it’s microstructure into martensite phase. In order to control heat transfer process, a study need to be carried out for understanding the characteristics of heat transfer between two solid bodies in contact to each other and investigates the influence of applied pressure to the heat transfer as well as optimizing its. To do so, a systematic approach has been planned to analyze the heat transfer using finite element analysis (FEA) using commercial simulation software as well as the experimental work. The FEA is done by simulating the heated blank or the specimen cool down as it brought into contact to the tools which has a temperature slightly lower than ambient temperature. The effect of different values of applied pressure is simulates by manipulating the values of thermal contact conductance at the blank and tool surface in contact and the thermal contact conductance values will be simulates ranging in between 1000 to 2000 W/m2K. Meanwhile, the experiment being conducted to measure temperature changes of the blank and tool as it is compress in between a set of experimental tool (upper and lower tool) at different pressure ranging between 5 to 35 MPa. The experiment results will be used to compute the actual thermal contact conductance and compared with the FEA simulation. Based on these analyzed result from both approach, the influence of the applied pressure to the heat transfer between two solid bodies in contact as well as the optimum value of applied pressure possibly defined.
format Thesis
author Mohd Ali Hanafiah, Shaharudin
author_facet Mohd Ali Hanafiah, Shaharudin
author_sort Mohd Ali Hanafiah, Shaharudin
title Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
title_short Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
title_full Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
title_fullStr Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
title_full_unstemmed Estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
title_sort estimation of thermal contact conductance value between boron steel blank and tool surface at different value of applied pressure in hot stamping process
publishDate 2014
url http://umpir.ump.edu.my/id/eprint/13164/1/FKP%20-%20MOHD%20ALI%20HANAFIAH%20SHAHARUDIN%20-%20CD%209603.pdf
http://umpir.ump.edu.my/id/eprint/13164/
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