Calculation of Lateral Stability of Tank Trucks and its Relationship with Filling Rate

Lieyun He, Yi-Feng Fu, Yan Zhou
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Abstract

To investigate a theoretical algorithm model of the lateral stability of tank trucks and its relationship with the liquid filling rate, the shifting of the liquid centroid during non-full loading is considered. The deformation of the suspension and tires under load is assumed to exhibit a linear relationship. Using the principle of moment balance, a calculation model for the maximum stable roll angle and rollover critical acceleration of tank trucks based on the “liquid–tank–vehicle” tri-coupling is established, and the relationship between the maximum stable roll angle and rollover critical acceleration of tank trucks is analyzed and compared. Based on the result and a specific tank truck model, the effects of the liquid filling rate on the maximum stable roll angle, rollover critical acceleration, and tank tilt angle of tank trucks are investigated using numerical analysis methods. A comparison with the lateral stability of ordinary trucks loaded with solid goods is performed to further examine the effect of the liquid filling rate on the lateral stability of tank trucks. The results show that the maximum stable roll angle and rollover critical acceleration are consistent indicators for evaluating the lateral stability of tank trucks; the lateral stability of tank trucks decreases owing to the shift in the liquid centroid inside the tank; as the liquid filling rate increases, the lateral stability of the tank trucks deteriorates slightly.
罐车横向稳定性计算及其与装载率的关系
为了研究罐式卡车横向稳定性的理论算法模型及其与液体填充率的关系,考虑了非满载时液体中心点的移动。假定悬架和轮胎在载荷作用下的变形呈线性关系。利用力矩平衡原理,建立了基于 "液-罐-车 "三耦合的油罐车最大稳定侧倾角和侧翻临界加速度计算模型,并分析比较了油罐车最大稳定侧倾角和侧翻临界加速度之间的关系。基于该结果和具体的罐车模型,使用数值分析方法研究了液体填充率对罐车最大稳定侧倾角、侧翻临界加速度和罐体倾角的影响。通过与装载固体货物的普通卡车的横向稳定性进行比较,进一步研究了液体填充率对罐式卡车横向稳定性的影响。结果表明,最大稳定侧倾角和侧翻临界加速度是评价罐式卡车横向稳定性的一致指标;罐式卡车的横向稳定性由于罐内液体中心点的移动而降低;随着液体填充率的增加,罐式卡车的横向稳定性略有恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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