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Analysis of the Influence of Cracked Sleepers under Static Loading on Ballasted Railway Tracks

机译:静荷载机械锚杆对镇流轨道轨道曲线轨道的影响分析

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The principal causes of cracking in prestressed concrete sleepers are the dynamic loads induced by track irregularities and imperfections in the wheel-rail contact and the in-phase and out-of-phase track resonances. The most affected points are the mid-span and rail-seat sections of the sleepers. Central and rail-seat crack detection require visual inspections, as legislation establishes, and involve sleepers’ renewal even though European Normative considers that thicknesses up to 0.5 mm do not imply an inadequate behaviour of the sleepers. For a better understanding of the phenomenon, the finite element method constitutes a useful tool to assess the effects of cracking from the point of view of structural behaviour in railway track structures. This paper intends to study how the cracks at central or rail-seat section in prestressed concrete sleepers influence the track behaviour under static loading. The track model considers three different sleeper models: uncracked, cracked at central section, and cracked at rail-seat section. These models were calibrated and validated using the frequencies of vibration of the first three bending modes obtained from an experimental modal analysis. The results show the insignificant influence of the central cracks and the notable effects of the rail-seat cracks regarding deflections and stresses.
机译:预应力混凝土睡眠机中裂缝的主要原因是通过轨道不规则和轮轨接触中的缺陷引起的动态载荷和相位的缺陷和相位外轨道共振。受影响最大的点是枕木的中间跨度和轨道座椅。即使欧洲规范考虑到高达0.5毫米的厚度,即使立法所建立,中央和轨道裂缝裂纹检测需要视觉检查,并涉及睡眠者的更新,这并不意味着枕木的行为不足。为了更好地理解现象,有限元方法构成了一种有用的工具,以评估从铁路轨道结构中结构行为的角度来看裂缝的影响。本文旨在研究预应力混凝土睡眠机中的中央或轨道座位的裂缝如何影响静态载荷下的轨道行为。轨道模型考虑了三种不同的睡眠模型:未传递,在中央部分破裂,并在轨道座椅裂缝破裂。使用从实验模态分析中获得的前三种弯曲模式的振动频率进行校准并验证这些模型。结果表明,中央裂缝的微不足道的影响以及轨道座裂纹关于偏转和应力的显着影响。

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