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Stability of continuous welded rail track

机译:连续焊接轨道的稳定性

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As the use of continuous welded rail (CWR) increases in track structures, derailing disasters associated with track buckling also increase in great numbers due to high compressive thermal stress. A three-dimensional CWR track model is developed in the present study to be used for extensive buckling analysis of CWR tracks subjected to temperature load. The analysis model is encoded into a special purpose program using the finite element method. The CWR track model consists of four elements: a mono-symmetric thin-walled open section beam element with 7 degrees of freedom per node to represent the rail; a solid beam-on-elastic-foundation element having 6 degrees of freedom per node to simulate the tie, including vertical and/or longitudinal ballast resistance; an elastic spring element with two nodes and zero length to stand for pad-fastener system; and spring elements for the lateral or longitudinal ballast resistances. Also, two types of significant nonlinearity are included in the track model: the geometric nonlinearity of the rail element, and the materially nonlinear resistance of the ballast. The validity of the present study is strictly verified through a series of comparative analyses with those by others. The nonlinear analysis results have shown that buckling of the track is a three-dimensional problem, and the 2-D rail-tie model and beam model overestimated the CWR track stability.
机译:随着轨道结构中连续焊接轨道(CWR)的使用增加,由于高压缩热应力,与轨道弯曲相关的脱轨灾害也大量增加。本研究中开发了三维CWR轨道模型,该模型可用于CWR轨道在温度载荷下的广泛屈曲分析。使用有限元方法将分析模型编码到专用程序中。 CWR轨道模型包含四个元素:一个单对称薄壁开口截面梁单元,每个节点具有7个自由度来表示轨道;固体弹性基础梁单元,每个节点具有6个自由度以模拟拉结,包括垂直和/或纵向压载阻力;一个具有两个节点且长度为零的弹性弹簧元件,用于固定垫系统。以及用于横向或纵向压载阻力的弹簧元件。另外,轨道模型中包括两种类型的明显非线性:轨道元素的几何非线性和镇流器的材料非线性电阻。通过与他人进行的一系列比较分析,严格验证了本研究的有效性。非线性分析结果表明,轨道的屈曲是一个三维问题,而二维轨枕模型和梁模型则高估了CWR轨道的稳定性。

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