钢轨应力无损检测方法的数值分析与试验验证

IF 2 Q2 ENGINEERING, MULTIDISCIPLINARY
A. Nasrollahi, P. Rizzo
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引用次数: 17

摘要

本文给出了沿单周期球形粒子阵列产生的高度非线性孤立波与轨道在与阵列点接触时的动态相互作用的数值公式和实验验证。建立了钢轨的一般有限元模型,并将其与离散粒子模型相结合,能够预测孤波沿垂直于钢轨腹板的l形阵列的传播。通过对长0.9 m和长2.4 m的钢轨段进行压缩载荷试验,验证了模型的有效性。研究的范围是开发一种新的无损评估技术,该技术能够估计连续焊接轨道中的应力,并最终推断出轨道中纵向应力为零的温度。本文的数值结果表明,孤立波的某些特征,如振幅和飞行时间,受轴向应力影响。实验结果验证了数值预测结果,为实际钢轨无损评估系统的有效性提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis and Experimental Validation of an Nondestructive Evaluation Method to Measure Stress in Rails
This article presents a numerical formulation and the experimental validation of the dynamic interaction between highly nonlinear solitary waves generated along a mono-periodic array of spherical particles and rails in a point contact with the array. A general finite element model of rails was developed and coupled to a discrete particle model able to predict the propagation of the solitary waves along a L-shaped array located perpendicular and in contact with the web of the rail. The models were validated experimentally by testing a 0.9-m long and a 2.4-m long rail segments subjected to compressive load. The scope of the study was the development of a new nondestructive evaluation technique able to estimate the stress in continuous welded rails and eventually to infer the temperature at which the longitudinal stress in the rail is zero. The numerical findings presented in this article demonstrate that certain features, such as the amplitude and time of flight, of the solitary waves are affected by the axial stress. The experimental results validated the numerical predictions and warrant the validation of the nondestructive evaluation system against real rails.
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来源期刊
CiteScore
3.80
自引率
9.10%
发文量
25
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