Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car

This paper presents the design of a new lightweight racing wheel. A lightweight wheel has the potential of providing better manoeuvrability and overall control during high performance operation. In this study, a Finite Element Model (FEA) was implemented to investigate the dynamic cornering fatigue...

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Published in:Journal of Advanced Research in Applied Mechanics
Main Author: Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85193391518&doi=10.37934%2faram.116.1.1323&partnerID=40&md5=ac25aa1989067344ec72268783468cf5
id 2-s2.0-85193391518
spelling 2-s2.0-85193391518
Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
2024
Journal of Advanced Research in Applied Mechanics
116
1
10.37934/aram.116.1.1323
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85193391518&doi=10.37934%2faram.116.1.1323&partnerID=40&md5=ac25aa1989067344ec72268783468cf5
This paper presents the design of a new lightweight racing wheel. A lightweight wheel has the potential of providing better manoeuvrability and overall control during high performance operation. In this study, a Finite Element Model (FEA) was implemented to investigate the dynamic cornering fatigue of the newly designed lightweight racing wheel. Due to the reason that the test was performed in a worst-case scenario and the specimens were required to achieve the minimum life cycles, out of the 36 specimens, the result has shown that only 12 specimens were able to pass the test. Based on the analysis, the specimens highlighted in green were those that could pass the test. It can be noted that those passed specimens were having 7 and 8 spokes. Conclusively, the cornering fatigue test shows that the spoke is vital in affecting the wheels' performance. For future studies, it is recommended that experimental studies are conducted. © 2024, Semarak Ilmu Publishing. All rights reserved.
Semarak Ilmu Publishing
22897895
English
Article
All Open Access; Gold Open Access
author Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
spellingShingle Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
author_facet Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
author_sort Ma’arof M.I.N.; Zakaria A.F.; Liang R.; Chala G.T.; Ikhsan N.; Nasir M.F.M.
title Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
title_short Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
title_full Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
title_fullStr Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
title_full_unstemmed Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
title_sort Dynamic Cornering Fatigue Test of New Lightweight Racing Wheel for Formula Society of Automotive Engineers (FSAE) Race Car
publishDate 2024
container_title Journal of Advanced Research in Applied Mechanics
container_volume 116
container_issue 1
doi_str_mv 10.37934/aram.116.1.1323
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85193391518&doi=10.37934%2faram.116.1.1323&partnerID=40&md5=ac25aa1989067344ec72268783468cf5
description This paper presents the design of a new lightweight racing wheel. A lightweight wheel has the potential of providing better manoeuvrability and overall control during high performance operation. In this study, a Finite Element Model (FEA) was implemented to investigate the dynamic cornering fatigue of the newly designed lightweight racing wheel. Due to the reason that the test was performed in a worst-case scenario and the specimens were required to achieve the minimum life cycles, out of the 36 specimens, the result has shown that only 12 specimens were able to pass the test. Based on the analysis, the specimens highlighted in green were those that could pass the test. It can be noted that those passed specimens were having 7 and 8 spokes. Conclusively, the cornering fatigue test shows that the spoke is vital in affecting the wheels' performance. For future studies, it is recommended that experimental studies are conducted. © 2024, Semarak Ilmu Publishing. All rights reserved.
publisher Semarak Ilmu Publishing
issn 22897895
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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