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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >An evaluation of ultrasonic arrays for the static and dynamic measurement of wheel-rail contact pressure and area
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An evaluation of ultrasonic arrays for the static and dynamic measurement of wheel-rail contact pressure and area

机译:超声波阵列的静态和动态测量轮轨接触压力和面积的评价

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摘要

The interfacial contact conditions between a railway vehicle wheel and the rail are paramount to the lifespan, safety and smooth operation of any rail network. The wheel-rail interface contact pressure and area conditions have been estimated, calculated and simulated by industry and academia for many years, but a method of accurately measuring dynamic contact conditions has yet to be realised. Methods using pressure-sensitive films and controlled air flow have been employed, but both are limited. Ultrasonic reflectometry is the term given to active ultrasonics in which an ultrasonic transducer is mounted on the outer surface of a component and a sound wave is generated. This ultrasonic wave packet propagates through the host medium and reflects off the contacting interface of interest. The reflected waveform is then detected and contact area and interfacial stiffness information can be extracted from the signal using the quasi-static spring model. Stiffness can be related to contact pressure by performing a simple calibration procedure. Previous contact pressure measurement work has relied on using a focusing transducer and a two-dimensional scanning arrangement which results in a high-resolution image of the wheel-rail contact, but is limited to static loading of a specimen cut from a wheel and rail. The work described in this paper has assessed the feasibility of measuring a dynamic wheel-rail contact patch using an array of 64 ultrasonic elements mounted in the rail. Each element is individually pulsed in sequence to build up a linear cross-sectional pressure profile measurement of the interface. These cross-sectional, line measurements are then processed and collated resulting in a two-dimensional contact pressure profile. Measurements have been taken at different speeds and loads.
机译:铁路车轮和轨道之间的界面接触条件是任何铁路网络的寿命,安全性和平稳操作都是至关重要的。估计轮轨接口接触压力和面积条件多年的工业和学术界估计,计算和模拟,但尚未实现准确测量动态接触条件的方法。采用了使用压敏膜和受控空气流的方法,但两者都是有限的。超声波反射测量是给予有源超声波的术语,其中超声换能器安装在部件的外表面上,并且产生声波。该超声波分组通过主介质传播并反映感兴趣的接触界面。然后检测反射波形,并且可以使用准静态弹簧模型从信号中提取接触区域和界面刚度信息。通过执行简单的校准程序,刚度可以与接触压力有关。先前的接触压力测量工作依赖于使用聚焦换能器和二维扫描装置,这导致轮轨接触的高分辨率图像,但仅限于从轮和轨道切割的样品的静载荷。本文描述的工作已经评估了使用安装在轨道中的64个超声波元件阵列测量动态轮轨接触贴片的可行性。每个元件按顺序单独脉冲,以构建界面的线性横截面压力曲线测量。然后处理这些横截面,线测量结果,导致二维接触压力轮廓。以不同的速度和负载进行了测量。

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