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Two-axle test vehicle for damage detection for railway tracks modeled as simply supported beams with elastic foundation

机译:用于铁路轨道损坏检测的双轴试验车辆,以简单地支持弹性基础

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For damage detection of railway tracks, a two-axle test vehicle is better than a single-axle vehicle due to its capability of self standing and stability. This paper presents a new, comprehensive theoretical framework for a two-axle test vehicle moving over railway tracks modeled as a simply supported beam with elastic foundation. Firstly, closed-form solutions for both the vehicle and rail responses of the system were derived, along with those for the two contact points by a back calculation procedure. Secondly, the driving component of the contact-point response was processed by the Hilbert transform to yield the Instantaneous Amplitude Squared (IAS) for damage detection. Then, the efficacy of the proposed technique was numerically validated by the Finite Element Method (FEM). Particularly, the sensitivity of the proposed technique was investigated against various factors, including the damage severity, multi damages, vehicle speed, track unevenness, track damping, and measurement noise. The result shows that the IAS of the driving component of the contact point response of the railway track is a good damage indicator in that it is of low frequencies and narrow band, while its modal amplitude is sensitive to the stiffness loss in rail supports.
机译:对于铁路轨道的损坏检测,由于其自​​体站立和稳定性的能力,双轴试验车辆优于单轴车辆。本文为双轴试验车辆提供了一种新的综合理论框架,用于在铁路轨道上移动,该框架以弹性基础为简单的支撑梁。首先,推导出系统的车辆和轨道响应的闭合溶液,以及通过后计算程序的两个接触点的封闭溶液。其次,Hilbert变换处理接触点响应的驱动分量,以产生用于损坏检测的瞬时幅度平方(IAS)。然后,通过有限元方法(FEM)进行数值验证所提出的技术的功效。特别地,针对各种因素研究了所提出的技术的灵敏度,包括伤害严重程度,多损坏,车速,轨道不均匀性,轨道阻尼和测量噪声。结果表明,铁路轨道的接触点响应的驱动分量的IAS是良好的损坏指示器,因为它是低频和窄带,而其模态幅度对轨道支撑件中的刚度损失敏感。

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