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Journal Article

Citation

Rakheja S, Stiharu I, Kang X, Romero JA. Heavy Vehicle Syst. 2002; 9(3): 223-240.

Affiliation

CONCAVE Research Center, Concordia University, Montreal, Que. H3G 1M8, Canada

Copyright

(Copyright © 2002, Inderscience Publishers)

DOI

unavailable

PMID

unavailable

Abstract

Dynamic response and stability characteristics of a partly-filled articulated liquid cargo vehicle with tanks of arbitrary cross-section are investigated under braking-in-a-turn manoeuvre. Tanks with circular, modified-oval and arbitrary cross-sections are considered for deriving the longitudinal and lateral cargo shifts under longitudinal as well as lateral acceleration fields. The three-dimensional quasi-static model of the partly-filled tanks is integrated to the dynamic model of the vehicle to study the role of tank geometry and road adhesion on the dynamic behaviour of the partly-filled liquid cargo vehicle. The directional dynamic characteristics under a braking-in-a-turn manoeuvre are evaluated in terms of moments induced by the moving cargo, wheel dynamic load factor, load transfer ratio, yaw and roll response, and braking performance of the vehicle. The results of the study reveal that dynamic performance of the partly-filled liquid cargo vehicle deteriorates significantly due to considerable magnitudes of roll, pitch and yaw moments imposed by the moving cargo. A partly-filled articulated tank vehicle, subject to braking-in-a-turn, is more susceptible to rollover on dry roads, while it exhibits a higher propensity of trailer swing on slippery roads. The results further indicate that tank cross-section yields certain influence on the dynamic characteristics of the partly-filled articulated liquid cargo vehicle under braking-in-a-turn.

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