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Numerical investigation of nonlinear properties of a rubber absorber in rail fastening systems

机译:轨道紧固系统中橡胶减振器非线性特性的数值研究。

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摘要

A nonlinear dynamic model of a rubber absorber in railway fastening systems is proposed, based on the superposition principle to simulate its nonlinear vibrational behavior. A dynamic experiment was carried out to obtain all model parameters. The accuracy of the model was supported by good agreement between measured and simulated results, and it should therefore be an effective mechanical tool for simulating and characterizing the nonlinear behavior of rubber absorbers in rail fastening systems at particular vibrational modes. Excitation frequency dependency and amplitude dependency of the nonlinear dynamic stiffness were also selected for further study. The results indicate that characteristics of the nonlinear dynamic stiffness are closely associated with both displacement amplitude and frequency, although frequency dependency is not as great as amplitude dependency.
机译:基于叠加原理,建立了铁路扣件系统中橡胶减振器的非线性动力学模型,以模拟其非线性振动行为。进行了动态实验以获得所有模型参数。该模型的准确性得到了测量结果和模拟结果之间良好一致性的支持,因此,它应该是一种有效的机械工具,用于在特定的振动模式下模拟和表征轨道紧固系统中橡胶减震器的非线性行为。非线性动态刚度的激励频率依赖性和幅度依赖性也被选择用于进一步研究。结果表明,非线性动态刚度的特性与位移振幅和频率都密切相关,尽管频率依赖性不如振幅依赖性大。

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