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Nonlinear Guided Waves for Neutral Temperature Measurement in Continuous Welded Rails: Results from Laboratory and Field Tests

机译:连续焊轨中性温度测量的非线性导波:实验室和现场测试的结果

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Continuous Welded Rail (CWR) is used in modern rail construction including high-speed rail transportation. The absence of expansion joints in these structures brings about the risk of breakage in cold weather and of buckling in warm weather due to the resulting thermal stresses. The University of California at San Diego (UCSD), under a Federal Railroad Administration (FRA) Office of Research and Development (R&D) grant, is developing a system for in-situ measurement of the rail Neutral Temperature in CWR. Currently, there is no well-established technique able to efficiently monitor the rail thermal stress, or the rail Neutral Temperature (rail temperature with zero thermal stress), to properly schedule slow-order mandates and prevent derailments. UCSD has developed a prototype (Rail-NT) for wayside rail Neutral Temperature measurement that is based on non-linear ultrasonic guided waves. Numerical models were first developed to identify proper guided wave modes and frequencies for maximum sensitivity to the thermal stresses in the rail web, with little influence of the rail head and rail foot. Experiments conducted at the UCSD Large-scale Rail NT Test-bed indicated a rail Neutral Temperature measurement accuracy of a few degrees. The first field tests of the Rail-NT prototype were performed in June 2012 at the Transportation Technology Center (TTC) in Pueblo, CO in collaboration with the Burlington Northern Santa Fe (BNSF) Railway. The results of these field tests were very encouraging, indicating an accuracy for Neutral Temperature measurement of 5 °F at worst, on both wood ties and concrete ties.
机译:连续焊接铁路(CWR)用于包括高速铁路运输在内的现代铁路建设中。这些结构中没有伸缩缝会导致由于冷应力而在寒冷天气中破裂和在温暖天气中弯曲的风险。加利福尼亚大学圣地亚哥分校(UCSD)在联邦铁路管理局(FRA)研究与开发办公室(R&D)资助下,正在开发一种CWR中轨中性温度的现场测量系统。当前,没有成熟的技术能够有效地监视轨道热应力或轨道中性温度(具有零热应力的轨道温度),以正确安排慢速指令并防止脱轨。 UCSD开发了基于非线性超声导波的路轨中性温度测量原型(Rail-NT)。首先开发了数值模型,以识别适当的导波模式和频率,以最大程度地提高对铁路腹板中热应力的敏感性,而对轨头和轨脚的影响很小。在UCSD大型Rail NT试验台上进行的实验表明,铁路中性点温度测量精度为几度。 2012年6月,与伯灵顿北部圣达菲(BNSF)铁路合作,在科罗拉多州普韦布洛的运输技术中心(TTC)对Rail-NT原型进行了首次现场测试。这些现场测试的结果令人鼓舞,表明在木结构和混凝土结构上最差的中性温度测量精度为5°F。

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