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Development on Stress Monitoring Method for Measurement of Cyclic Stress of Railway Axles

机译:应力监测方法在铁路车轴循环应力测量中的发展

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摘要

In general, the S-N curve in railway axles was mainly carried out under 10~7-10~8 cycles, while the service area of a railway axle is 10~8-10~9 cycles. The strain gages using electrical resistance have been used to measure stresses in railway vehicle wheelsets. However, there are some problems with strain gages using electrical resistance for railway axles. For example, the measured data is for special or limited intervals only. Strain gage installation is complicated, that is, it requires lead wires for measurement. The design of railway axles makes use of data that was obtained many years ago. The applied stresses in wheelsets running for a long time and in new railway vehicle wheelsets have not been studied clearly yet. It is necessary to carry out stress monitoring for more than 10~8 cycles to evaluate the safety of railway wheelset. Therefore, it is necessary to develop new stress monitoring techniques that can easily measure the working stress of the wheelset. In the present paper, the stress measurement technique of copper electroplating is considered because of its high potential for this purpose.
机译:一般来说,铁路车轴的S-N曲线主要在10〜7-10〜8个周期内进行,而铁路车轴的服务区域为10〜8-10〜9个周期。使用电阻的应变仪已用于测量铁路车辆轮对中的应力。然而,使用电阻用于铁路车轴的应变计存在一些问题。例如,测量数据仅用于特殊或有限的时间间隔。应变计的安装很复杂,也就是说,它需要用于测量的导线。铁路车轴的设计利用了许多年前获得的数据。长期运行的轮对和新的铁路车辆轮对中的施加应力尚未得到明确研究。为了评估轮对的安全性,必须进行10〜8个以上的应力监测。因此,有必要开发新的应力监测技术,以轻松测量轮对的工作应力。在本文中,考虑到电镀铜的应力测量技术,因为其具有很高的潜力。

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