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Nondestructive measurement of neutral temperature in continuous welded rails by nonlinear ultrasonic guided waves

机译:非线性超声导波对连续焊接钢轨中性温度的无损测量

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Modern rail construction uses continuous-welded rail (CWR). The presence of very few joints leads to an increasing concern due to the large longitudinal loads caused by restrained thermal expansion and contraction, following seasonal temperature variations. The knowledge of the current state of thermal stress in the rail or, equivalently, the rail neutral temperature (corresponding to zero net longitudinal force) is a key need within the railroad transportation community in order to properly schedule slow-order mandates and prevent derailments. This paper presents a nondestructive diagnostic system for measurement of the neutral temperature in CWR based on nonlinear ultrasonic guided waves. The theoretical part of the study involved the development of a constitutive model in order to explain the origin of nonlinear effects arising in complex waveguides under constrained thermal expansion. A numerical framework has been implemented to predict internal resonance conditions of nonlinear waves in complex waveguides. This theoreticalumerical phase has led to the development of an experimental prototype (Rail-NT) that was tested both in the laboratory and in the field. The results of these experimental tests are also summarized. (C) 2014 Acoustical Society of America.
机译:现代铁路建设使用连续焊接铁路(CWR)。由于季节性温度变化,由于受限制的热膨胀和收缩而产生的大的纵向载荷,接头的存在很少引起人们的关注。为了正确安排慢速指令并防止脱轨,了解铁路中当前的热应力状态或等效的中性温度(对应于零纵向净力)是铁路运输界的关键需求。本文提出了一种基于非线性超声导波的CWR中性温度测量无损诊断系统。该研究的理论部分涉及本构模型的开发,目的是为了解释在受限热膨胀下复杂波导中产生的非线性效应的起源。已经实现了一个数值框架来预测复杂波导中非线性波的内部共振条件。这个理论/数字阶段导致了实验原型(Rail-NT)的开发,该原型已在实验室和现场进行了测试。还总结了这些实验测试的结果。 (C)2014美国声学学会。

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