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RADIAL ULTRASONIC TESTING OF FREIGHT CAR AXLES

机译:货运车轴的径向超声波测试

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North American freight car axles are one of the most robust mechanical components in railway service. Axles can be in service for many years (several decades in some cases) and undergo millions of fatigue cycles under heavy axle loads. Although for rotating bending fatigue the central axis is a zero stress location, larger internal central axis discontinuities will experience finite cyclic stress levels as the radial distance increases from the central axis. Larger internal discontinuities at the axle central axis, caused by forging bursts or unhealed pipe, are not a common occurrence; however they are irregularly shaped and represent a possible source of fatigue crack initiation. This paper describes efforts to quantify stresses at central axis discontinuities of various different sizes using finite element analysis (FEA) computer simulations. Also, the paper reviews the radial ultrasonic inspection of a large group of axles and subsequent destructive testing to examine the physical size of indications found using the ultrasonic techniques. Recommendations for radial ultrasonic testing of newly manufactured and second hand axles are provided, and changes to appropriate Association of American Railroads (AAR) axle specifications are outlined.
机译:北美货运车轴是铁路服务中最强大的机械部件之一。轴可以在服务多年(几十年在某些情况下),并在重型轴载荷下进行数百万疲劳周期。虽然对于旋转弯曲疲劳,中心轴是零应力位置,但随着径向距离从中心轴增加,较大的内部中心轴线不连续性将经历有限的循环应力水平。轴中央轴线的较大内部不连续性,由锻造爆破或不充分的管道引起,不是常见的发生;然而,它们不规则地形状并且代表了疲劳裂纹引发的可能源。本文介绍了使用有限元分析(FEA)计算机模拟来量化各种不同尺寸的中心轴不连续性的努力。此外,本文还介绍了大群轴的径向超声波检查以及随后的破坏性测试,以检查使用超声技术找到的适当的物理尺寸。提供了用于新制造的新制造和二手轴的径向超声检测的建议,并概述了适当的美国铁路(AAR)轴规格的适当协会的变化。

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