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Multiple-Wheel Induced Vibration of Rail with Surface Irregularity

机译:表面不规则性的多轮轨道振动

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A mathematical model that predicts the vibration of wheel/rail systems excited by multiple wheels has been developed. A track is modeled as an Euler beam of infinite length, periodically supported by a system comprised of two springs and a mass. In this system the components represent the following: the two springs, rail pad and ballast stiffness; the mass, a sleeper. A wheel is represented by a single mass. Two sources of vibration are taken into account in the model: the varying stiffness of track between the sleepers and an irregularity on the railhead. On the assumption that any response would be repeated at sleeper intervals, a solution is derived by first equating the value of Fourier coefficients of the wheel locus and that of the rail displacement. The method is applied to the analysis of the vibration of a rail excited by two bogie wheels passing in succession. A sinusoidal irregularity with the wavelength of the sleeper spacing or higher is supposed to exist on the railhead. The results show the basic characteristics of rail vibration such as Doppler shift due to wheel movement, response variations with the irregularity wavelengths and vibration amplitude distribution that is strongly affected by the interference of the two wheels.
机译:已经开发出数学模型,该数学模型预测了多个车轮所激发的车轮/轨道系统的振动。一条轨道被建模为无限长的欧拉梁,并由一个由两个弹簧和一个重物组成的系统周期性地支撑。在该系统中,组件表示以下内容:两个弹簧,轨垫和压载刚度;群众,一个卧铺。车轮由单个质量表示。该模型考虑了两个振动源:轨枕之间的轨道刚度变化以及铁轨上的不规则性。假设将以轨枕间隔重复任何响应,则首先将车轮轨迹的傅里叶系数值与钢轨位移的傅里叶系数值相等,即可得出解决方案。该方法适用于连续两个转向架轮激励的轨道振动的分析。轨枕上应存在轨枕间隔波长或更高波长的正弦不规则形。结果显示了钢轨振动的基本特征,例如由于车轮运动引起的多普勒频移,具有不规则波长的响应变化以及受两个车轮干扰强烈影响的振动振幅分布。

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