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FEASABILITY STUDY FOR AN ULTRASONIC SENSOR FOR MONITORING WHEEL FLANGE CONTACT

机译:超声波传感器监测轮缘接触的可行性研究

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摘要

If the contact between the wheel and rail occurs at the flange, a high degree of slip is inherent. This can result in excessive wear and the potential for rolling contact fatigue cracking. Multi-body dynamics software is useful for predicting the bogie and track characteristics that may lead to flange contact occuring. However, there is a shortage of experimental tools available to validate such models or to assist in vehicle and track condition monitoring.rnIn this study, the feasibility of a new approach is investigated. The method is based on an ultrasonic sensor mounted on the wheel. The concept is that the sensor emits an ultrasonic pulse which is designed to impinge on the wheel flange. If there is no contact the pulse is fully reflected back at the flange and picked up by the same sensor. If flange contact takes place, a proportion of the pulse amplitude will be transmitted into the rail. The signal reflected back to the sensor is therefore reduced. The amount by which this signal reduces indicates how much flange contact occurs.rnTest specimens were cut from sections of wheel and rail, and a 2MHz ultrasonic contact transducer was bonded onto the wheel in a position best suited to detect the flange contact. The specimens were pressed to together in a bi-axial loading frame to generate differing degrees of head and flange contact. The reflected signal was monitored as the normal and lateral loads were varied. It proved possible not only to detect the onset of flanging, but also to record a signal that varied monotonically with both normal and lateral applied load. A map of reflected ultrasound against the applied loading is presented.
机译:如果车轮和轨道之间的接触发生在法兰处,则必然会发生高度的打滑。这可能会导致过度磨损,并可能导致滚动接触疲劳裂纹。多体动力学软件可用于预测可能导致法兰接触发生的转向架和履带特性。然而,缺乏可用于验证此类模型或辅助车辆和轨道状况监测的实验工具。在这项研究中,研究了一种新方法的可行性。该方法基于安装在车轮上的超声波传感器。概念是传感器发出超声波脉冲,该脉冲被设计成撞击在车轮法兰上。如果没有接触,则脉冲将在法兰处完全反射回去,并由同一传感器接收。如果发生法兰接触,则一部分脉冲幅度将被传输到导轨中。因此,减少了反射回传感器的信号。该信号减少的量表示发生了多少法兰接触。从车轮和钢轨的各个部分切下试样,然后将2MHz超声波接触换能器粘合到车轮上最适合检测法兰接触的位置。将样品在双轴加载框架中压在一起,以产生不同程度的头部和法兰接触。当法向和横向载荷变化时,对反射信号进行监控。事实证明,不仅可以检测翻边的开始,而且还可以记录随法向和横向施加的载荷而单调变化的信号。呈现了反射的超声相对于所施加的载荷的图。

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