振动压路机机座和驾驶室隔振模型的研制

Q3 Physics and Astronomy
Yundong Mei, Haina Liu, Jiao Renqiang, Yi Ding, V. Nguyen
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引用次数: 1

摘要

在弹性轮胎/刚性滚筒激振力和越野土-地相互作用的影响下,振动压路机的行驶质量受到了很大影响。为此,对汽车座舱和座椅的隔振模型和结构进行了研究和改进,以提高汽车的乘坐质量。为了概述座椅悬架和驾驶室隔离的研究和开发过程,本研究在现有研究结果的基础上,对开发并应用于振动压路机的座椅和驾驶室隔振模型进行了全面的介绍。研究表明,半主动液压隔离(HI)或半主动气动液压隔离(PHI)应用于座舱隔振,显著改善了座舱抖动和驾驶员的乘坐质量,而在座椅悬架中加入准零刚度元件(QSE),大大改善了驾驶员的乘坐质量。基于研究结果,为了控制座舱抖动并提高驾驶员的乘坐质量,应在进一步的研究中开发座舱的半主动HI和座椅的QSE之间的组合。
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 vibration isolation models in vibratory roller’s seat and cabin: A survey
Under the impaction of excitation forces of the elastic tire/rigid drum and off-road soil ground interactions, the vibratory roller’s ride quality had been strongly influenced. Thus, the vibration isolation models and structures of the vehicle’s cabin and seat are studied and improved for enhancing the vehicle’s ride quality. To have an overview of the study and development process of the seat suspensions and cabin isolations, this research provides the overall view of the seat and cabin’s vibration isolation models developed and applied to the vibratory rollers based on the results of the existing studies. The study shows that with the semiactive hydraulic isolations (HIs) or semiactive pneumatic-hydraulic isolations (PHIs) applied to the cabin’s vibration isolations, the cabin shaking and driver’s ride quality have been remarkably ameliorated, while, with quasi-zero stiffness elements (QSE) added into the seat suspension, the driver’s ride quality has been greatly ameliorated. Based on the studied results, to control the cabin shaking and enhance the driver’s ride quality, a combination between the cabin’s semiactive HIs and the seat’s QSE should be developed in further studies.
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来源期刊
Noise and Vibration Worldwide
Noise and Vibration Worldwide Physics and Astronomy-Acoustics and Ultrasonics
CiteScore
1.90
自引率
0.00%
发文量
34
期刊介绍: Noise & Vibration Worldwide (NVWW) is the WORLD"S LEADING MAGAZINE on all aspects of the cause, effect, measurement, acceptable levels and methods of control of noise and vibration, keeping you up-to-date on all the latest developments and applications in noise and vibration control.
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