Please use this identifier to cite or link to this item: http://ir.futminna.edu.ng:8080/jspui/handle/123456789/14225
Title: Stability Analysis of a Semi-Trailer Articulated Vehicle: A Review
Authors: Bako, Sunday
Bori, Ige
Nasir, Abdulkarim
Musa, Nicholas. A.
Keywords: Dynamic Stability
Lateral Stability
Rollover Stability
Yaw Stability
Issue Date: 2021
Publisher: International Journal of Automotive Science and Technology (Turkey)
Series/Report no.: vol.2;No 2
Abstract: Semi-trailer articulated vehicles are mainly used for transportation of goods and industrial products. The vehicles are made of two or more vehicular units that are coupled by a me-chanical device called, hitch point. The static and dynamic behavior of these vehicles differs from those of other vehicles, while accidents on these vehicles are fatal and disastrous. Therefore, there is need to know more about the static and dynamic characteristic of these vehicle, in order to ensure safety of lives and properties. This paper provides literature review on the aforementioned vehicle in order to have more insight on how to improve its stability. It was observed from the literatures review that, the higher the weight on this vehicle, the farther the distance of centre of gravity (CG) from the hitch point. This affects the safety margin against rollover stability of these vehicles. The fifth wheel lead, and the distance between the tractor, and the trailer CG were also found to play a vital role in influencing the stability of these vehicles. However, it was observed that, it would of great important for a tractor unit with one rear axle, to have the fifth wheel lead, to be as large as possible in order to control the vehicle instability. Therefore, due to the unusual behavior of these vehicles, more research works are needed in order to have more insight on the static and dynamic characteristic of these vehicles as to improve the safety of lives and properties.
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/14225
ISSN: e-ISSN: 2587-0963
Appears in Collections:Mechanical Engineering

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