Contribution to the research of oscillatory loads of sprung and unsprung masses in order to create conditions for laboratory tests of heavy motor vehicles

M. Demić, Aleksandar Đurić, A. Grkić, Momir Drakulić, S. Muždeka
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Abstract

Introduction/purpose: Motor vehicles are complex dynamic systems due to spatial displacements, changes in the characteristics of components during their lifetime, a large number of influences and disturbances, the appearance of backlash, friction, hysteresis, etc. The aforementioned dynamic phenomena, especially vibrations, cause driver and passenger fatigue, reduce the lifetime of the vehicle and its systems, etc. Methods: In general, the movement of vehicles is carried out on uneven roads and curvilinear paths in the road. Not only do oscillatory movements cause material fatigue of vehicle parts, but they also have a negative effect on people's health. That is why special attention must be paid to the coordination of the mutual movement of the subsystems, and in particular, the vehicle suspension system, even at the stage of the motor vehicle design. For these purposes, theoretical, experimental or combined methods can be used. Therefore, it is very useful to have the experimental results of the oscillations of the vehicle subsystem in operating conditions, so the aim of this work was to use the movement of the 4x4 drive FAP 1118 vehicle in operating conditions (due to higher speeds - in road conditions) to define the conditions for testing oscillatory loads in laboratory conditions. Results: This is made possible by registering and identifying statistical parameters of registered quantities. Conclusion: Based on the measured data, the research can be programmed on shakers in laboratory conditions, and, at the same time, the size to be reproduced can be chosen as well.
对簧载和非簧载振动载荷的研究做出贡献,为重型机动车辆的实验室试验创造条件
简介/用途:机动车辆是复杂的动力系统,由于空间位移,部件在其使用寿命期间特性的变化,大量的影响和干扰,出现反弹,摩擦,滞后等。上述动力现象,特别是振动,会造成驾驶员和乘客疲劳,降低车辆及其系统的使用寿命等。方法:一般情况下,车辆的运动是在凹凸不平的道路上进行的,道路上的路径是曲线的。振荡运动不仅会造成汽车零部件的材料疲劳,还会对人体健康产生负面影响。这就是为什么即使在机动车设计阶段,也必须特别注意各子系统,特别是车辆悬架系统的相互运动的协调。为了达到这些目的,可以使用理论、实验或综合方法。因此,拥有车辆子系统在运行条件下振荡的实验结果是非常有用的,因此这项工作的目的是使用4x4驱动FAP 1118车辆在运行条件下的运动(由于更高的速度-在道路条件下)来定义在实验室条件下测试振荡载荷的条件。结果:这可以通过登记和识别登记数量的统计参数来实现。结论:根据实测数据,可在实验室条件下对激振器进行程序化研究,同时可选择再现的尺寸。
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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