首页> 外文会议>International Meeting on Low Frequency Noise and Vibration and Its Control; 20040830-0901; Maastricht(NL) >Methods for measuring the dynamic stiffness of resilient rail fastenings for low frequency vibration isolation of railways, their problems and possible solutions
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Methods for measuring the dynamic stiffness of resilient rail fastenings for low frequency vibration isolation of railways, their problems and possible solutions

机译:铁路低频隔振的弹性轨道紧固件动态刚度的测量方法,问题和可能的解决方案

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摘要

Low frequency ground or structure-borne sound and vibration emission from urban rail transport systems can be greatly reduced by reducing the stiffness of the rail fastening. Estimates and models of the efficacy of such systems require accurate measurements of their dynamic stiffness over the frequency range of interest, and European Standards make recommendations for such measurements. This paper describes these methods and their shortcomings when applied to modern high mass/low stiffness systems, one problem of which is the contribution of inertial forces at frequencies approaching and above the natural resonance of the system. This paper suggests a method for correcting for this inertial force, and tests this correction with the driving point method of dynamic stiffness measurement when applied to the Pandrol Vanguard resilient rail fastening. The preliminary tests effectively double the frequency range of valid measurements, a result which could be improved when applied to stiffer systems or with further improvements to the test equipment.
机译:通过降低轨道固定装置的刚度,可以大大减少城市轨道交通系统发出的低频地面声或结构声和振动。对此类系统功效的评估和模型要求在感兴趣的频率范围内对其动态刚度进行准确的测量,而欧洲标准为此类测量提出了建议。本文介绍了这些方法及其在应用于现代高质量/低刚度系统中的缺点,其中一个问题是在接近和高于系统自然共振频率时的惯性力贡献。本文提出了一种校正此惯性力的方法,并在将动态刚度测量的驱动点方法应用于Pandrol Vanguard弹性导轨固定件时,对该校正方法进行了测试。初步测试有效地将有效测量的频率范围增加了一倍,当应用于较硬的系统或对测试设备进行进一步改进时,可以改善结果。

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