Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging
Monitoring the temperature on a rotating armature is necessary to ensure that the maximum temperature permissible by the conductor's insulation class is not exceeded. In a brushed dc machine, the closest location in direct contact with the armature that can be instrumented using thermocouples a...
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Institute of Electrical and Electronics Engineers Inc.
2022
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Online Access: | http://umpir.ump.edu.my/id/eprint/39405/1/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature.pdf http://umpir.ump.edu.my/id/eprint/39405/2/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature%20of%20a%20brushed%20dc%20machine%20using%20thermal%20imaging_ABS.pdf http://umpir.ump.edu.my/id/eprint/39405/ https://doi.org/10.1109/ICEM51905.2022.9910586 |
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my.ump.umpir.394052023-11-28T02:18:27Z http://umpir.ump.edu.my/id/eprint/39405/ Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging Mohd Azri Hizami, Rasid Muhammad Nor Azril, Zulkafli Daing Mohamad Nafiz, Daing Idris Nurul Fatimah, Abdullah T Technology (General) TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Monitoring the temperature on a rotating armature is necessary to ensure that the maximum temperature permissible by the conductor's insulation class is not exceeded. In a brushed dc machine, the closest location in direct contact with the armature that can be instrumented using thermocouples are the brush and bearing. However, the temperature measured is lower compared to the armature temperature. This paper presents an evaluation on the temperature distribution of an armature of a 250W brushed DC machine using thermal imaging. Using the blocked-rotor test, the temperature was raised to a steady state temperature. The thermal images are taken on the then unmounted armature winding. The temperature distribution was analyzed by identifying the maximum, minimum, and average temperature of each component. The winding, the brush, the armature core, and the commutator are the hottest components. Non-homogenous components, especially the commutator exhibits large temperature range. Institute of Electrical and Electronics Engineers Inc. 2022 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/39405/1/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature.pdf pdf en http://umpir.ump.edu.my/id/eprint/39405/2/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature%20of%20a%20brushed%20dc%20machine%20using%20thermal%20imaging_ABS.pdf Mohd Azri Hizami, Rasid and Muhammad Nor Azril, Zulkafli and Daing Mohamad Nafiz, Daing Idris and Nurul Fatimah, Abdullah (2022) Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging. In: 2022 International Conference on Electrical Machines, ICEM 2022, 5-8 September 2022 , Valencia. pp. 1927-1933. (183486). ISBN 978-166541432-6 https://doi.org/10.1109/ICEM51905.2022.9910586 |
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T Technology (General) TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Mohd Azri Hizami, Rasid Muhammad Nor Azril, Zulkafli Daing Mohamad Nafiz, Daing Idris Nurul Fatimah, Abdullah Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
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Monitoring the temperature on a rotating armature is necessary to ensure that the maximum temperature permissible by the conductor's insulation class is not exceeded. In a brushed dc machine, the closest location in direct contact with the armature that can be instrumented using thermocouples are the brush and bearing. However, the temperature measured is lower compared to the armature temperature. This paper presents an evaluation on the temperature distribution of an armature of a 250W brushed DC machine using thermal imaging. Using the blocked-rotor test, the temperature was raised to a steady state temperature. The thermal images are taken on the then unmounted armature winding. The temperature distribution was analyzed by identifying the maximum, minimum, and average temperature of each component. The winding, the brush, the armature core, and the commutator are the hottest components. Non-homogenous components, especially the commutator exhibits large temperature range. |
format |
Conference or Workshop Item |
author |
Mohd Azri Hizami, Rasid Muhammad Nor Azril, Zulkafli Daing Mohamad Nafiz, Daing Idris Nurul Fatimah, Abdullah |
author_facet |
Mohd Azri Hizami, Rasid Muhammad Nor Azril, Zulkafli Daing Mohamad Nafiz, Daing Idris Nurul Fatimah, Abdullah |
author_sort |
Mohd Azri Hizami, Rasid |
title |
Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
title_short |
Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
title_full |
Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
title_fullStr |
Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
title_full_unstemmed |
Experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
title_sort |
experimental evaluation of temperature distribution in armature of a brushed dc machine using thermal imaging |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2022 |
url |
http://umpir.ump.edu.my/id/eprint/39405/1/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature.pdf http://umpir.ump.edu.my/id/eprint/39405/2/Experimental%20evaluation%20of%20temperature%20distribution%20in%20armature%20of%20a%20brushed%20dc%20machine%20using%20thermal%20imaging_ABS.pdf http://umpir.ump.edu.my/id/eprint/39405/ https://doi.org/10.1109/ICEM51905.2022.9910586 |
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