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悬架刚度对车辆振动传播的影响与评估。

Impact and Assessment of Suspension Stiffness on Vibration Propagation into Vehicle.

机构信息

Department of Road Transport, Faculty of Transport and Aviation Engineering, Silesian University of Technology, 40-019 Katowice, Poland.

出版信息

Sensors (Basel). 2023 Feb 9;23(4):1930. doi: 10.3390/s23041930.

Abstract

The impact of transport-induced vibrations on people is a particularly important problem. Sudden or intensifying vibration phenomena of a local nature may compromise safety, especially in transport. The paper addresses the results of research on the impact of spring stiffness parameters on the propagation of vibrations in the vehicle structure using simple amplitude and frequency measures. The use of the developed method of selective multi-criteria analysis of frequency bands made it possible to compare the vibrations recorded in the vehicle with a new or worn coil spring. The results of the present study allow the development of a large data base in which all signals are classified by the exploitation parameters and location of the propagation of vibration in the vehicle. The most important findings and achievements of the presented study are the testing of actual suspension components with real damage under controlled conditions, the identification of the vibration propagation path from the wheel to the driver and passenger feet, the quantitative comparison of vibrations affecting humans in the vehicle (through the feet), and the frequency decomposition of vibration for selected bands. These findings improve the proper interpretation of the developed measures and, as a result, the difficulties in using this knowledge at the engineering level, for example, in the design and construction improvement stage. Therefore, innovation points and engineering significances are a method of selective multi-criteria analysis of frequency bands and have potential applications in diagnostics and the design of suspension systems and in terms of passengers' comfort.

摘要

交通引起的振动对人的影响是一个特别重要的问题。局部突发性或加剧性振动现象可能危及安全,尤其是在交通运输中。本文采用简谐振动和频率的测量方法,针对悬架弹簧刚度参数对车辆结构中振动传播的影响进行了研究。利用开发的频带多准则选择性分析方法,对车辆中记录的新的或磨损的螺旋弹簧振动进行了对比分析。本研究的结果可以用来建立一个大型数据库,所有信号都根据利用系数和车辆中振动的传播位置进行分类。该研究最重要的发现和成果是在可控条件下对实际悬架部件和真实损伤进行了测试,确定了从车轮到驾驶员和乘客脚部的振动传播路径,对车辆中影响人体的振动(通过脚部)进行了定量比较,对选定频段的振动进行了频率分解。这些发现有助于正确解释所开发的测量方法,从而降低在工程应用中使用该知识的难度,例如在设计和施工改进阶段。因此,该研究的创新点和工程意义在于频带多准则选择性分析方法,它在悬架系统的诊断、设计和乘客舒适性方面具有潜在的应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3ed/9965621/a9f2f7fbfba6/sensors-23-01930-g006.jpg

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