Analysing the Effect of Chassis Torsional Flexibility on the Rollover Threshold of a Multi-Purpose Agricultural Vehicle

Vehicles Pub Date : 2024-02-21 DOI:10.3390/vehicles6010018
Mattia Belloni, M. Vignati, E. Sabbioni
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Abstract

Multi-purpose agricultural tractors are vehicles that are usually involved in different operations, including road maintenance in small villages and cultivation of small agricultural plots, particularly in mountainous areas. These vehicles typically feature narrow tracks to enhance manoeuvrability, making rollover stability a critical consideration in operational settings. This characteristic arises from the interplay between the suspension and vehicle chassis. This paper introduces a numerical multi-body model designed to replicate the dynamics of a multi-purpose tractor with a torsional chassis. Model parameters were derived through experimental measurements conducted on an actual vehicle. Static measurements were performed to assess tire and suspension stiffness while tilting tests were performed to establish the static rollover limit of the vehicle. Dynamic tests conducted on a four-post test rig characterised the vehicle’s dynamics. The validated model was utilised to explore the vehicle’s stability by reproducing the static rollover tests and simulating the vehicle’s performance under working conditions on a banked road. The vehicle rollover stability was studied by performing a sensitivity analysis that considered both chassis torsional stiffness and suspension stiffness under different loading conditions. The results indicate a trade-off between frame and suspension stiffnesses that enhances overall vehicle stability.
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分析底盘扭转柔性对多用途农用车翻滚阈值的影响
多用途农用拖拉机通常用于不同的作业,包括小村庄的道路养护和小块农田的耕作,特别是在山区。这些车辆通常具有狭窄的履带,以提高机动性,因此翻车稳定性是作业环境中的一个重要考虑因素。这一特性源于悬挂系统和车辆底盘之间的相互作用。本文介绍了一个多体数值模型,旨在复制带有扭转底盘的多功能拖拉机的动力学特性。模型参数是通过在实际车辆上进行的实验测量得出的。静态测量用于评估轮胎和悬挂刚度,倾斜测试用于确定车辆的静态侧翻极限。在四柱试验台上进行的动态测试则确定了车辆的动态特性。通过重现静态翻滚试验和模拟车辆在斜坡道路上的工作条件下的性能,利用验证过的模型来探索车辆的稳定性。通过进行敏感性分析,考虑不同负载条件下的底盘扭转刚度和悬挂刚度,对车辆翻滚稳定性进行了研究。结果表明,车架和悬架刚度之间的权衡可增强车辆的整体稳定性。
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