现代乘用车车身弯曲振动参数研究及抑制方法分析

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引用次数: 0

摘要

考虑了铁路运输中提高乘客舒适度的问题。研究发现,影响舒适性的关键因素是车身的垂直振动,其强度直接取决于车身的弯曲刚度。反过来,弯曲振动的第一频率和形式可以作为评估弯曲刚度的标准。旨在提高乘客舒适度和降低车身振动强度的设计概念被考虑在内。分析了通过加强车身金属结构和改变其动力框架结构以及引入特定的车际连接来增加车身弯曲振动固有频率的方法。通过控制汽车悬架系统中的阻尼,以及通过减少与车轮对不平衡相关的振动,综述了汽车车身隔振的方法。研究了通过引入附加阻尼和使用动态减振系统来提高舒适性水平的经验。确定了所考虑的技术解决方案的优点和缺点,并评估了它们在实际操作中的使用经验。对减小乘用车车身弯曲振动的工程解决方案的分析表明,解决这一问题的复杂性,需要进行一系列理论和实验研究,需要选择考虑汽车设计特点和振动刺激来源的方法。
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STUDY OF BENDING VIBRATION PARAMETERS AND ANALYSIS OF METHODS OF THEIR SUPPRESSION IN THE BODIES OF MODERN PASSENGER CARS
The issues of increasing the passenger comfort level during railway transportation are considered. It is found out that the key factors for the comfort level are vertical vibrations of the body, and their intensity directly depends on the body bending stiffness. In turn, the first frequency and form of bending vibrations of the body can be taken as a criterion for evaluating bending stiffness. Design concepts aimed at increasing the comfort level of passengers and reducing the intensity of vibrations of car bodies are considered. Methods are analyzed that give the opportunity to increase the intrinsic frequency of the body bending vibrations by strengthening the metal structure of the body and making changes to the structure of its power frame, as well as by introducing specific inter-car connections. Methods of vibration isolation of the car bodies are reviewed by controlling damping in the car suspension system, as well as by reducing vibrations associated with the imbalance of wheel pairs. The experience of increasing the level of the com-fort due to the introduction of additional damping and the use of dynamic vibration damping systems has been studied. Advantages and disadvantages of the considered technical solutions are identified, as well as the experience of their use in real operation is evaluated. The analysis of the problem under consideration concerning engineering solutions for reducing bending vibrations of passenger car bodies shows the complexity of solving this problem, requiring the use of a set of theoretical and experimental studies, the choice of methods that take into account the features of the car designs and sources of vibration stimulation.
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