Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process

This dispersed Al2O3 nanoparticles from the range of 0.2 to 1.0% volume concentration with an average diameter of 13 nm into three volume percentages of water to ethylene glycol such as 60%:40%, 50%:50%, and 40%:60%. The heat transfer distribution of the hot blanks with nanocoolant and chilled water...

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Main Authors: Yusoff, A. R., Yusoff, Wan Azhar, Azmi, W. H., Shaharudin, Mohd Ali Hanafiah, Osman Zahid, Muhammed Nafis, Hamedon, Zamzuri B.
Format: Research Report
Language:English
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Online Access:http://umpir.ump.edu.my/id/eprint/36526/1/Characterization%20of%20thermal%20conductivity%20and%20viscosity%20of%20alumina%20nanocoolant%20with%20ethylene-glycerol%20based%20fluid%20for%20quenching%20process.wm.pdf
http://umpir.ump.edu.my/id/eprint/36526/
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Institution: Universiti Malaysia Pahang Al-Sultan Abdullah
Language: English
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spelling my.ump.umpir.365262023-03-13T07:09:56Z http://umpir.ump.edu.my/id/eprint/36526/ Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process Yusoff, A. R. Yusoff, Wan Azhar Azmi, W. H. Shaharudin, Mohd Ali Hanafiah Osman Zahid, Muhammed Nafis Hamedon, Zamzuri B. TJ Mechanical engineering and machinery TS Manufactures This dispersed Al2O3 nanoparticles from the range of 0.2 to 1.0% volume concentration with an average diameter of 13 nm into three volume percentages of water to ethylene glycol such as 60%:40%, 50%:50%, and 40%:60%. The heat transfer distribution of the hot blanks with nanocoolant and chilled water are simulated for transient thermal analysis in finite element simulation via ANSYS to evaluate the enhancement of convection heat transfer coefficient and determine the optimum cooling rate of cooling system in HPF tool. It was found that the highest enhancement of thermal conductivity was observed to be 10% higher than base fluid for 1.0% volume concentration of Al2O3 at 55 °C in 60%:40% (W/EG). The pattern of the temperature distribution of the finite element analysis model was in agreement with the experimental results. The tensile strength and Vickers hardness values of the hot pressed parts were evaluated to be approximately 1,550 MPa and 588 HV, respectively. Research Report NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36526/1/Characterization%20of%20thermal%20conductivity%20and%20viscosity%20of%20alumina%20nanocoolant%20with%20ethylene-glycerol%20based%20fluid%20for%20quenching%20process.wm.pdf Yusoff, A. R. and Yusoff, Wan Azhar and Azmi, W. H. and Shaharudin, Mohd Ali Hanafiah and Osman Zahid, Muhammed Nafis and Hamedon, Zamzuri B. Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process. , [Research Report: Research Report] (Unpublished)
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 TJ Mechanical engineering and machinery
TS Manufactures
spellingShingle TJ Mechanical engineering and machinery
TS Manufactures
Yusoff, A. R.
Yusoff, Wan Azhar
Azmi, W. H.
Shaharudin, Mohd Ali Hanafiah
Osman Zahid, Muhammed Nafis
Hamedon, Zamzuri B.
Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
description This dispersed Al2O3 nanoparticles from the range of 0.2 to 1.0% volume concentration with an average diameter of 13 nm into three volume percentages of water to ethylene glycol such as 60%:40%, 50%:50%, and 40%:60%. The heat transfer distribution of the hot blanks with nanocoolant and chilled water are simulated for transient thermal analysis in finite element simulation via ANSYS to evaluate the enhancement of convection heat transfer coefficient and determine the optimum cooling rate of cooling system in HPF tool. It was found that the highest enhancement of thermal conductivity was observed to be 10% higher than base fluid for 1.0% volume concentration of Al2O3 at 55 °C in 60%:40% (W/EG). The pattern of the temperature distribution of the finite element analysis model was in agreement with the experimental results. The tensile strength and Vickers hardness values of the hot pressed parts were evaluated to be approximately 1,550 MPa and 588 HV, respectively.
format Research Report
author Yusoff, A. R.
Yusoff, Wan Azhar
Azmi, W. H.
Shaharudin, Mohd Ali Hanafiah
Osman Zahid, Muhammed Nafis
Hamedon, Zamzuri B.
author_facet Yusoff, A. R.
Yusoff, Wan Azhar
Azmi, W. H.
Shaharudin, Mohd Ali Hanafiah
Osman Zahid, Muhammed Nafis
Hamedon, Zamzuri B.
author_sort Yusoff, A. R.
title Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
title_short Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
title_full Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
title_fullStr Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
title_full_unstemmed Characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
title_sort characterization of thermal conductivity and viscosity of alumina nanocoolant with ethylene-glycerol based fluid for quenching process
url http://umpir.ump.edu.my/id/eprint/36526/1/Characterization%20of%20thermal%20conductivity%20and%20viscosity%20of%20alumina%20nanocoolant%20with%20ethylene-glycerol%20based%20fluid%20for%20quenching%20process.wm.pdf
http://umpir.ump.edu.my/id/eprint/36526/
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