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On the Equivalence between Static and Dynamic Railway Track Response and on the Euler-Bernoulli and Timoshenko Beams Analogy

机译:关于静态和动态铁路响应与Euler-Bernoulli和Timoshenko Beams类比的等价

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摘要

The paper tries to clarify the problem of solution and interpretation of railway track dynamics equations for linear models. Set of theorems is introduced in the paper describing two types of equivalence: between static and dynamic track response under moving load and between the dynamic response of track described by both the Euler-Bernoulli and Timoshenko beams. The equivalence is clarified in terms of mathematical method of solution. It is shown that inertia element of rail equation for the Euler-Bernoulli beam and constant distributed load can be considered as a substitute axial force multiplied by second derivative of displacement. Damping properties can be treated as additional substitute load in the static case taking into account this substitute axial force. When one considers the Timoshenko beam, the substitute axial force depends additionally on shear properties of rail section, rail bending stiffness, and subgrade stiffness. It is also proved that Timoshenko beam, described by a single equation, from the point of view of solution, is an analogy of the Euler-Bernoulli beam for both constant and variable load. Certain numerical examples are presented and practical interpretation of proved theorems is shown.
机译:本文试图阐明线性模型的铁路轨道动力学方程的解决方案和解释问题。在描述两种等价的论文中介绍了定理集:在移动负载下的静态和动态轨道响应和Euler-Bernoulli和Timoshenko梁描述的轨道的动态响应之间。在解决方案的数学方法方面澄清了等价。结果表明,欧拉 - 伯尔努利光束和恒定分布式负荷的轨道方程的惯性元件可以被认为是替代轴向力乘以第二导数的位移。考虑到这种替代轴向力,可以将阻尼特性视为静态案例中的额外替代载荷。当一个人考虑Timoshenko梁时,替代轴向力另外取决于轨道部分,轨道弯曲刚度和路基刚度的剪切性能。还证明,从解决方案的角度来看,Timoshenko光束从解决方案的角度来看是欧尔-Bernoulli波束的类比,用于恒定和可变负载。提出了某些数值示例,并显示了被证明定理的实际解释。

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