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Measuring rail/wheel contact points of running railway vehicles

机译:测量正在运行的铁路车辆的铁路/车轮接触点

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摘要

It has been difficult to detect lateral contact point of rail and wheel, though technology of instrumented wheelset has advanced in the last 20 years. Therefore, it is interesting and worth while to study on method of measuring rail/wheel contact point and contact force of running railway vehicles, since many things in real rail/wheel contact phenomenon are still unknown. Recently, we have tried to develop a method of measuring rail/wheel contact point by improving conventional method of measuring wheel load and lateral force in which strain of the disk surface is used for measuring these forces. Firstly surface strain on disk type wheel is analyzed by an FEM program, NAST'RAN, under the condition that vertical, lateral, or longitudinal force separately acts on various points along the wheel profile. By the calculated result, it shows possibility of detecting the rail/wheel contact point by means of measuring lateral distribution of compress strain which changes according to the load position, i.e. rail/wheel contact point. Secondly the idea above is verified by static load experiments using an actual disk type wheelset. The location of an area where lateral force affects little on surface strain is investigated, since the lateral distribution of strain should be measured in such an area to avoid the interference of bending by lateral force. And the theory for the measurement is modified for on-track testing and the best position and direction for strain gauges is proposed in accordance with the calculated and experimental results. Finally, two wheelsets for the measurement are made and field running test using this method is performed to collect data in various kind of running conditions.
机译:尽管近20年来仪表轮对技术已经发展起来,但很难检测到钢轨和车轮的横向接触点。因此,由于实际轨道/车轮接触现象中的许多事情仍然未知,因此研究测量轨道/车轮接触点和正在运行的铁路车辆的接触力的方法很有意义并且值得一读。最近,我们试图通过改进测量车轮载荷和侧向力的常规方法来开发一种测量轨道/车轮接触点的方法,在该方法中,使用磁盘表面的应变来测量这些力。首先,在垂直,横向或纵向力分别作用于沿车轮轮廓的各个点的条件下,通过FEM程序NAST'RAN分析圆盘式车轮上的表面应变。通过计算结果,显示出通过测量根据载荷位置即轨道/车轮接触点而变化的压缩应变的横向分布来检测轨道/车轮接触点的可能性。其次,上述想法通过使用实际的盘式轮对的静载荷实验得到验证。研究了横向力对表面应变影响很小的区域的位置,因为应在这样的区域中测量应变的横向分布,以避免横向力对弯曲的干扰。并修改了测量理论,进行了现场测试,并根据计算结果和实验结果提出了应变仪的最佳位置和方向。最后,制作两个用于测量的轮对,并使用该方法进行现场运行测试,以收集各种运行条件下的数据。

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