Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.

The necessity of a precise battery thermal management system is to maximize the efficiency of energy storage capacity, driving range, cell longevity and system safety which requires a better understanding on battery thermal distribution and behavior. Since most of the research work is conducted base...

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Main Authors: Jubair, Abdullah, Che Daud, Zul Hilmi, Mazali, Izhari Izmi, Asus, Zainab, Abdul Hamid, Mohd. Kameil
Format: Conference or Workshop Item
Published: 2023
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Online Access:http://eprints.utm.my/108181/
http://dx.doi.org/10.1007/978-981-19-1577-2_31
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spelling my.utm.1081812024-10-20T06:46:16Z http://eprints.utm.my/108181/ Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition. Jubair, Abdullah Che Daud, Zul Hilmi Mazali, Izhari Izmi Asus, Zainab Abdul Hamid, Mohd. Kameil TJ Mechanical engineering and machinery The necessity of a precise battery thermal management system is to maximize the efficiency of energy storage capacity, driving range, cell longevity and system safety which requires a better understanding on battery thermal distribution and behavior. Since most of the research work is conducted based on the normal operating temperature, there is lack of data of the batter internal resistance at high temperature mostly above 60 ℃. Hence, it is necessary to design a test rig where the battery can be tested for a wide range of temperature. During the design process, several parameters were considered such as battery box shape, material and strength, air tunnel material and efficiency, chassis strength and stability, alignment and battery positioning. This test rig was designed to test the battery up to 80 ℃ of temperature. Finalized design was validated through finite element analysis and flow simulation in Solidworks. Justification was made through simulation results that the battery box fulfills the design requirements of safety and efficiency with 0.05 mm of displacement at maximum load and 28 m/s of maximum air velocity during operation. 2023-08-11 Conference or Workshop Item PeerReviewed Jubair, Abdullah and Che Daud, Zul Hilmi and Mazali, Izhari Izmi and Asus, Zainab and Abdul Hamid, Mohd. Kameil (2023) Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition. In: 6th International Conference on Mechanical Engineering Research, ICMER 2021, 26 October 2021 - 27 October 2021, Pahang, Malaysia - Virtual, Online. http://dx.doi.org/10.1007/978-981-19-1577-2_31
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Jubair, Abdullah
Che Daud, Zul Hilmi
Mazali, Izhari Izmi
Asus, Zainab
Abdul Hamid, Mohd. Kameil
Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
description The necessity of a precise battery thermal management system is to maximize the efficiency of energy storage capacity, driving range, cell longevity and system safety which requires a better understanding on battery thermal distribution and behavior. Since most of the research work is conducted based on the normal operating temperature, there is lack of data of the batter internal resistance at high temperature mostly above 60 ℃. Hence, it is necessary to design a test rig where the battery can be tested for a wide range of temperature. During the design process, several parameters were considered such as battery box shape, material and strength, air tunnel material and efficiency, chassis strength and stability, alignment and battery positioning. This test rig was designed to test the battery up to 80 ℃ of temperature. Finalized design was validated through finite element analysis and flow simulation in Solidworks. Justification was made through simulation results that the battery box fulfills the design requirements of safety and efficiency with 0.05 mm of displacement at maximum load and 28 m/s of maximum air velocity during operation.
format Conference or Workshop Item
author Jubair, Abdullah
Che Daud, Zul Hilmi
Mazali, Izhari Izmi
Asus, Zainab
Abdul Hamid, Mohd. Kameil
author_facet Jubair, Abdullah
Che Daud, Zul Hilmi
Mazali, Izhari Izmi
Asus, Zainab
Abdul Hamid, Mohd. Kameil
author_sort Jubair, Abdullah
title Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
title_short Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
title_full Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
title_fullStr Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
title_full_unstemmed Design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
title_sort design of an experimental test rig to determine the battery internal resistance beyond normal operating condition.
publishDate 2023
url http://eprints.utm.my/108181/
http://dx.doi.org/10.1007/978-981-19-1577-2_31
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score 13.209306