开发了一种用于货车横向稳定的横向稳定系统的杠杆-电磁稳定器的设计和工作参数的确定方法

N.W. Tint, V. Alakin
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引用次数: 0

摘要

本文主要研究如何利用杠杆电磁横向稳定系统来提高汽车的横向稳定性、操控性和安全性。随着汽车动力学的快速发展,汽车的道路安全性也应得到提高。了解车辆侧倾稳定性数据对于开发提高道路安全的车辆稳定系统非常重要。对卡车和乘用车进行审查后发现,正常的防侧倾杆是用来增加横向稳定性的。目前,高级轿车已经开始使用主动稳定器(防侧倾杆),它在转弯时提供更有效的汽车对准。传统防侧倾杆的主要缺点是减少悬架行程,并且在转弯和操纵时不能提供必要的平稳性。这些移动会导致危险的交通状况。因此,不利的驾驶条件表现在车辆的稳定性和可控性以及平顺性方面,这决定了在严重转弯和操纵时的舒适程度。提出了一种新的车辆主动安全系统,该系统可以提高车辆的横向稳定性。给出了提高轻型货车横向稳定性的杠杆电磁横向稳定系统的设计和运行参数的确定方法,并以GAZelle NEXT货车为例进行了转弯和机动时的研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a method for substantiation of the design and working parameters of a lever-electromagnetic stabilizer of lateral stability system for stabilization of the transverse stability of cargo vans
The work is devoted to the issue of increasing the lateral stability, handling and safety of a car with a lever-electromagnetic system of transverse stabilization. The road safety of vehicles should improve with the rapid development of vehicle dynamics. Knowledge of vehicle roll stability data is important for the development of vehicle stability systems that will improve road safety. As a result of a review of trucks and passenger vehicles, it was found that the normal anti-roll bars are used to increase lateral stability. At present, higher-class passenger cars have begun to use active stabilizers (anti-roll bars), which provide more efficient alignment of the car when cornering. The main disadvantage of a conventional anti-roll bar is the reduction in suspension travel and does not provide the necessary smoothness when cornering and when maneuvering. These movements can lead to dangerous traffic situations. Thus, unfavorable driving conditions are manifested in terms of vehicle stability and controllability, as well as a smooth ride, which determines the level of comfort during heavy cornering and maneuvering. A new vehicle active safety system has been proposed, which makes it possible to increase lateral stability. The given method of substantiating the design and operating parameters of the lever-electromagnetic lateral stabilization system, which increase the lateral stability of light-duty vans, and the results of a study on the example of a GAZelle NEXT cargo van when cornering and maneuvering are given.
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