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Nonlinear buckling instabilities of interspersed railway tracks

机译:间隙铁路轨道的非线性屈曲稳定性

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In a conventional railway system, timber sleepers have been widely used for ballasted railway tracks to carry passengers and transport goods. However, due to the limited availability of reliable and highquality timbers, and restrictions on deforestation, the ``interspersed" approach is adopted to replace ageing timbers with concrete sleepers. The replacement of ageing timber sleepers is frequently done over old and soft existing formations, which have been in service for so long, by installing new stiff concrete sleepers in their place. This method provides a cost-effective and quick solution for the second and third track classes to maintain track quality. Presently, railway track buckling, caused by extreme temperature, is a serious issue that causes a huge loss of assets in railway systems. The increase in rail temperature can induce a compression force in the continuous welded rail (CWR) and this may cause track buckling when the compression force reaches the buckling strength. According to the buckling evidences seen around the world, buckling usually occurs in ballasted track with timber sleepers and thus there is a clear need to improve the buckling resistance of railway tracks. However, the buckling of interspersed tracks has not been fully studied. This unprecedented study highlights 3D finite element modelling of interspersed railway tracks subjected to temperature change. The effect of the boundary conditions on the buckling shape is investigated. The results show that the interspersed approach may reduce the likelihood of track buckling. The results can be used to predict the buckling temperature and to inspect the conditions of interspersed railway tracks. The new findings highlight the buckling phenomena of interspersed railway tracks, which are usually adopted during railway transformations from timber to concrete sleepered tracks in real-life practices globally. The insight into interspersed railway tracks derived from this study will underpin the life cycle design, maintenance, and construction strategies related to the use of concrete sleepers as spot replacement sleepers in ageing railway track systems. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在传统的铁路系统中,木材轨枕已广泛用于塑造铁路轨道,以携带乘客和运输商品。然而,由于可靠和高度的木材的可用性有限,并采用对森林砍伐的限制,采用“散步”方法用混凝土睡眠替换衰老木材。更换老化木材睡眠机经常在旧的和软现有的形成上进行,这已经长期以来一直在使用它的地方。该方法为第二和第三轨道类提供了成本效益和快速的解决方案,以维持轨道质量。目前,铁路扣弯曲,由极端引起的温度是一个严重的问题,导致铁路系统中的资产巨大损失。轨道温度的增加可以在连续焊接导轨(CWR)中引起压缩力,并且当压缩力达到屈曲强度时,这可能导致轨道弯曲。根据世界各地看到的屈曲证据,屈曲通常发生在带木枕的碴轨道中,因此有一个CL耳朵需要提高铁路轨道的屈曲阻力。然而,突然曲目的屈曲尚未完全研究。这项前所未有的研究突出了经过温度变化的三通铁路轨道的3D有限元建模。研究了边界条件对屈曲形状的影响。结果表明,流动的方法可能会降低轨道屈曲的可能性。结果可用于预测屈曲温度并检查流动的铁路轨道条件。新发现突出了流动铁路轨道的屈曲现象,通常在铁路转换期间从木材到全球现实生活实践中的混凝土嗜好轨道采用。从本研究中汲取的铁路轨道的洞察力将基于与使用混凝土睡眠机的使用循环设计,维护和建筑策略作为老化铁路轨道系统中的现场更换枕头。 (c)2021 elestvier有限公司保留所有权利。

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