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49419

THE EFFECT OF SUSPENSION GEOMETRY ON A VEHICLE RIDE CHARACTERISTICS DURING DECELERATION AND ACCELERATION

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Last updated: 24 Dec 2024

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Abstract

In designing a modern vehicle, some factors have to be considered. The most significant one, in so far as its long term effects are most profound and widespread such as the transverse-engined(front-wheel-drive) concept. Concomitant with this concept was the realization that the resulting low polar moment of inertia would give, when fitted with conventional suspensions, a high pitch frequency or "small-vehicle ride". The object of this paper is to demonstrate the effects of the suspension geometry on the vehicle pitch and bounce attitudes during braking or acceleration. Two degree of freedom models of a vehicle are employed herein. The steady-state positions in both pitch and bounce are developed for linear systems of typical suspensions that may be either conventional or coupled systems. The results indicate that the rear suspension system makes very significant contribution to the anti-dive properties of either conventional or coupled. suspension systems.

DOI

10.21608/amme.1984.49419

Authors

First Name

S.

Last Name

ABOU-EL-SEOUD

MiddleName

A.

Affiliation

Associate Professor, Dept. of Mechanical Engineering, Faculty of Eng. & Technology, El-minia University, El-minia, Egypt.

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Volume

2

Article Issue

1st Conference on Applied Mechanical Engineering.

Related Issue

7654

Issue Date

1984-05-01

Receive Date

2019-09-24

Publish Date

1984-05-01

Page Start

189

Page End

201

Print ISSN

2636-4352

Online ISSN

2636-4360

Link

https://amme.journals.ekb.eg/article_49419.html

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https://amme.journals.ekb.eg/service?article_code=49419

Order

3

Type

Original Article

Type Code

831

Publication Type

Journal

Publication Title

The International Conference on Applied Mechanics and Mechanical Engineering

Publication Link

https://amme.journals.ekb.eg/

MainTitle

THE EFFECT OF SUSPENSION GEOMETRY ON A VEHICLE RIDE CHARACTERISTICS DURING DECELERATION AND ACCELERATION

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Article

Created At

22 Jan 2023