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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Propagation characteristics of ultrasonic guided waves in continuously welded rail
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Propagation characteristics of ultrasonic guided waves in continuously welded rail

机译:连续焊接铁路超声波引导波的传播特性

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摘要

Rail defects cause numerous railway accidents. Trains are derailed and serious consequences often occur. Compared to traditional bulk wave testing, ultrasonic guided waves (UGWs) can provide larger monitoring ranges and complete coverage of the waveguide cross-section. These advantages are of significant importance for the non-destructive testing (NDT) of the continuously welded rail, and the technique is therefore widely used in high-speed railways. UGWs in continuous welded rail (CWR) and their propagation characteristics have been discussed in this paper. Finite element methods (FEMs) were used to accomplish a vibration modal analysis, which is extended by a subsequent dispersion analysis. Wave structure features were illustrated by displacement profiles. It was concluded that guided waves have the ability to detect defects in the rail via choice of proper mode and frequency. Additionally, thermal conduction that is caused by temperature variation in the rail is added into modeling and simulation. The results indicated that unbalanced thermal distribution may lead to the attenuation of UGWs in the rail.
机译:轨道缺陷导致众多铁路事故。列车是出轨,经常发生严重后果。与传统的散装波检测相比,超声波引导波(UGW)可以提供更大的监控范围和波导横截面的完全覆盖。这些优点对于连续焊接导轨的非破坏性测试(NDT)具有重要意义,因此该技术被广泛用于高速铁路。本文讨论了连续焊接导轨(CWR)中的UGWS及其传播特性。有限元方法(有限元)用于完成振动模态分析,其通过随后的分散分析延伸。波浪结构特征是通过位移配置文件说明的。它的结论是,引导波有能力通过选择适当的模式和频率来检测轨道中的缺陷。另外,通过轨道中的温度变化引起的热传导被添加到建模和仿真中。结果表明,不平衡的热分布可能导致轨道中的UGWS的衰减。

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