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ADVANTAGE OF A COMBINED ULTRASONIC AND EDDY CURRENT EXAMINATION FOR RAILWAY INSPECTION TRAINS

机译:用于铁路检查列车的超声波和涡流检查的组合超声波和涡流检查

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Some years ago two railway inspection trains (RIT) already equipped with ultrasound, had additional advanced eddy current techniques installed. Recently a new RIT was equipped with a system that was designed, from the beginning, to employ a combination of these two techniques for non-destructive rail inspection. The eddy current technique has been developed to enable identification and evaluation of rolling contact fatigue (RCF) defects. The ultrasound technique is aimed at measurements in the rail bulk volume, which are not feasible using the eddy current technique. Experience gained from application has shown that clear improvement on rail inspection can be achieved. For example, following Deutsche Bahn DB (German Rail) AG guideline defects which are classified as group 2 using ultrasound testing can be further labeled as "distinguished positions" if for example head checking can be identified in the same position using the eddy current technique i.e. the new technique is capable of identifying two fundamentally different types of defects occurring at the same location. Such defects can then be classified as Group 1 equivalent according to the DB AG guideline. Furthermore,- problem cases in the past, such as the decision whether a weld or rail joint is present for a fishing table can be reliably determined using additional information from the eddy current technique. In this presentation examples will be provided to demonstrate application.
机译:有几年前,已经配备了超声波的两台铁路检查火车(RIT),安装了额外的先进涡流技术。最近,一个新的RIT配备了一个从头设计设计的系统,以采用这两种技术的组合用于非破坏性导轨检查。已经开发了涡流技术,以实现滚动接触疲劳(RCF)缺陷的识别和评估。超声技术旨在轨道散装体积的测量,这是使用涡流技术不可行的。从应用中获得的经验表明,可以实现对铁路检查的清晰改进。例如,在使用超声检测的Deutsche Bahn DB(德国轨道)AG指南缺陷,可以进一步标记为使用涡流技术在相同位置在相同位置识别的话可以进一步标记为“可分辨位置”,即新技术能够识别在同一位置发生的两个基本不同类型的缺陷。然后可以根据DB AG指南将这种缺陷分类为第1族等同物。此外,过去的问题情况,例如可以使用来自涡流技术的附加信息可靠地确定是否存在焊接或轨道接头是否存在焊接或轨道接头。在该介绍中,将提供实施例以证明应用。

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