Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid

Technological advancements in thermal systems demand an innovative heat dissipation technology. Magnetorheological (MR) fluid has a huge potential to solve the problem. However, characterising thermal conductivity of the materials in magnetic fields required tailored instruments. This paper presents...

Full description

Bibliographic Details
Main Authors: M. S. A., Rahim, I., Ismail, S. A., Wahid, S. N., Aqida
Format: Conference or Workshop Item
Language:English
Published: EDP Sciences 2017
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/16289/1/Magnetic%20field%20simulation%20of%20a%20thermal%20conductivity%20measurement%20instrument%20for%20magnetorheological%20fluid.pdf
_version_ 1825823487237816320
author M. S. A., Rahim
I., Ismail
S. A., Wahid
S. N., Aqida
author_facet M. S. A., Rahim
I., Ismail
S. A., Wahid
S. N., Aqida
author_sort M. S. A., Rahim
collection UMP
description Technological advancements in thermal systems demand an innovative heat dissipation technology. Magnetorheological (MR) fluid has a huge potential to solve the problem. However, characterising thermal conductivity of the materials in magnetic fields required tailored instruments. This paper presents a concept design of the MR fluids thermal conductivity measurement instrument. The developed instrument was designed to be able to measure thermal conductivity in both parallel and perpendicular orientations with magnetic field. Magnetic fields distribution of the proposed concept design was analysed using finite element method for magnetics. Design modification then conducted to improve the magnetic fields strength. Findings of this study showed that gap thickness played a significant factor in determining the optimal design. Simulated magnetic fields strength at both parallel and perpendicular orientations were found identical, yet varied in distributions.
first_indexed 2024-03-06T12:11:58Z
format Conference or Workshop Item
id UMPir16289
institution Universiti Malaysia Pahang
language English
last_indexed 2024-03-06T12:11:58Z
publishDate 2017
publisher EDP Sciences
record_format dspace
spelling UMPir162892018-01-22T06:26:22Z http://umpir.ump.edu.my/id/eprint/16289/ Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid M. S. A., Rahim I., Ismail S. A., Wahid S. N., Aqida TJ Mechanical engineering and machinery TS Manufactures Technological advancements in thermal systems demand an innovative heat dissipation technology. Magnetorheological (MR) fluid has a huge potential to solve the problem. However, characterising thermal conductivity of the materials in magnetic fields required tailored instruments. This paper presents a concept design of the MR fluids thermal conductivity measurement instrument. The developed instrument was designed to be able to measure thermal conductivity in both parallel and perpendicular orientations with magnetic field. Magnetic fields distribution of the proposed concept design was analysed using finite element method for magnetics. Design modification then conducted to improve the magnetic fields strength. Findings of this study showed that gap thickness played a significant factor in determining the optimal design. Simulated magnetic fields strength at both parallel and perpendicular orientations were found identical, yet varied in distributions. EDP Sciences 2017 Conference or Workshop Item PeerReviewed application/pdf en cc_by http://umpir.ump.edu.my/id/eprint/16289/1/Magnetic%20field%20simulation%20of%20a%20thermal%20conductivity%20measurement%20instrument%20for%20magnetorheological%20fluid.pdf M. S. A., Rahim and I., Ismail and S. A., Wahid and S. N., Aqida (2017) Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid. In: MATEC Web of Conferences: The 2nd International Conference on Automotive Innovation and Green Vehicle (AiGEV 2016) , 2-3 August 2016 , Malaysia Automotive Institute, Cyberjaya, Selangor. pp. 1-9., 90 (01061). ISSN 2261-236X (Published) https://doi.org/10.1051/matecconf/20179001061
spellingShingle TJ Mechanical engineering and machinery
TS Manufactures
M. S. A., Rahim
I., Ismail
S. A., Wahid
S. N., Aqida
Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title_full Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title_fullStr Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title_full_unstemmed Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title_short Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
title_sort magnetic field simulation of a thermal conductivity measurement instrument for magnetorheological fluid
topic TJ Mechanical engineering and machinery
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/16289/1/Magnetic%20field%20simulation%20of%20a%20thermal%20conductivity%20measurement%20instrument%20for%20magnetorheological%20fluid.pdf
work_keys_str_mv AT msarahim magneticfieldsimulationofathermalconductivitymeasurementinstrumentformagnetorheologicalfluid
AT iismail magneticfieldsimulationofathermalconductivitymeasurementinstrumentformagnetorheologicalfluid
AT sawahid magneticfieldsimulationofathermalconductivitymeasurementinstrumentformagnetorheologicalfluid
AT snaqida magneticfieldsimulationofathermalconductivitymeasurementinstrumentformagnetorheologicalfluid