Comparison study for double passive car suspension system through mathematical modelling and experimental work

The purpose of the car suspension was to enhance the safety and comfortability to the driver when driving car in the road or highway. Car suspension was a system of spring or shock absorbers connecting between the wheels and axles to the chassis of a car. In this study, the comparison between mathem...

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Main Authors: Yahaya, Saifudin Hafiz, Yaakub, Siti Farizah, Salleh, Mohd Shukor, Ahmad, Fauzi, Yaakob, Mohd Yuhazri, Akmal, Suriati
Format: Article
Language:English
Published: Accent Social and Welfare Society 2021
Online Access:http://eprints.utem.edu.my/id/eprint/25839/2/FARIZAH%201.PDF
http://eprints.utem.edu.my/id/eprint/25839/
https://accentsjournals.org/PaperDirectory/Journal/IJATEE/2021/9/6.pdf
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Institution: Universiti Teknikal Malaysia Melaka
Language: English
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spelling my.utem.eprints.258392022-04-13T11:37:49Z http://eprints.utem.edu.my/id/eprint/25839/ Comparison study for double passive car suspension system through mathematical modelling and experimental work Yahaya, Saifudin Hafiz Yaakub, Siti Farizah Salleh, Mohd Shukor Ahmad, Fauzi Yaakob, Mohd Yuhazri Akmal, Suriati The purpose of the car suspension was to enhance the safety and comfortability to the driver when driving car in the road or highway. Car suspension was a system of spring or shock absorbers connecting between the wheels and axles to the chassis of a car. In this study, the comparison between mathematical modelling and experimental work for the ride performance of a passive quarter car model suspension system was showed and discussed. The mathematical modelling of double passive quarter car model suspension system was formulated and solved numerically using the second-order linear differential equation. The outputs from the Mathematical Modelling were plotted using MATLAB software. The vertical displacement was produced from the mathematical modelling was at 0.015 m identified as a maximum point while the minimum point was at-0.015 m. The vertical displacements from the experimental work were at 0.02 m and-0.03 m at the minimum point. The comparison showed the oscillation of vertical displacement for the mathematical modelling and the experimental work were identical. All displacements were produced by the mathematical modelling tend to close to its mean which was 0.000176 m (almost zero). When the zero displacement achieved, less-vibration was occurred. Due to the finding, the mathematical modelling has showed some potentials to be further explored especially for predicting the suspension system model. Accent Social and Welfare Society 2021 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25839/2/FARIZAH%201.PDF Yahaya, Saifudin Hafiz and Yaakub, Siti Farizah and Salleh, Mohd Shukor and Ahmad, Fauzi and Yaakob, Mohd Yuhazri and Akmal, Suriati (2021) Comparison study for double passive car suspension system through mathematical modelling and experimental work. International Journal of Advanced Technology and Engineering Exploration, 8 (82). pp. 1183-1192. ISSN 2394-7454 https://accentsjournals.org/PaperDirectory/Journal/IJATEE/2021/9/6.pdf 10.19101/IJATEE.2021.874380
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description The purpose of the car suspension was to enhance the safety and comfortability to the driver when driving car in the road or highway. Car suspension was a system of spring or shock absorbers connecting between the wheels and axles to the chassis of a car. In this study, the comparison between mathematical modelling and experimental work for the ride performance of a passive quarter car model suspension system was showed and discussed. The mathematical modelling of double passive quarter car model suspension system was formulated and solved numerically using the second-order linear differential equation. The outputs from the Mathematical Modelling were plotted using MATLAB software. The vertical displacement was produced from the mathematical modelling was at 0.015 m identified as a maximum point while the minimum point was at-0.015 m. The vertical displacements from the experimental work were at 0.02 m and-0.03 m at the minimum point. The comparison showed the oscillation of vertical displacement for the mathematical modelling and the experimental work were identical. All displacements were produced by the mathematical modelling tend to close to its mean which was 0.000176 m (almost zero). When the zero displacement achieved, less-vibration was occurred. Due to the finding, the mathematical modelling has showed some potentials to be further explored especially for predicting the suspension system model.
format Article
author Yahaya, Saifudin Hafiz
Yaakub, Siti Farizah
Salleh, Mohd Shukor
Ahmad, Fauzi
Yaakob, Mohd Yuhazri
Akmal, Suriati
spellingShingle Yahaya, Saifudin Hafiz
Yaakub, Siti Farizah
Salleh, Mohd Shukor
Ahmad, Fauzi
Yaakob, Mohd Yuhazri
Akmal, Suriati
Comparison study for double passive car suspension system through mathematical modelling and experimental work
author_facet Yahaya, Saifudin Hafiz
Yaakub, Siti Farizah
Salleh, Mohd Shukor
Ahmad, Fauzi
Yaakob, Mohd Yuhazri
Akmal, Suriati
author_sort Yahaya, Saifudin Hafiz
title Comparison study for double passive car suspension system through mathematical modelling and experimental work
title_short Comparison study for double passive car suspension system through mathematical modelling and experimental work
title_full Comparison study for double passive car suspension system through mathematical modelling and experimental work
title_fullStr Comparison study for double passive car suspension system through mathematical modelling and experimental work
title_full_unstemmed Comparison study for double passive car suspension system through mathematical modelling and experimental work
title_sort comparison study for double passive car suspension system through mathematical modelling and experimental work
publisher Accent Social and Welfare Society
publishDate 2021
url http://eprints.utem.edu.my/id/eprint/25839/2/FARIZAH%201.PDF
http://eprints.utem.edu.my/id/eprint/25839/
https://accentsjournals.org/PaperDirectory/Journal/IJATEE/2021/9/6.pdf
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