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Study of Pier Top Longitudinal Horizontal Rigidity on Rigid Frame Bridge Continuous Welded Rail

机译:刚性框架桥连续焊接轨道上墩顶纵向水平刚度研究

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The pier longitudinal horizontal stiffness is the key technical parameter of rigid frame bridge and the continuous welded rail. Both the distribution of longitudinal force and the relative displacement between the beam and rail are rely on the longitudinal horizontal stiffness of the pier. This passage takes the symmetrical arrangement of different span rigid frame bridge in ballast track as an example to study the value of pier top longitudinal horizontal rigidity, using the finite element method. The analysis show that when the amplitude of rail temperature variation is less than 50°C and the nominal temperature span within a certain range, the minimum value of pier longitudinal horizontal rigidity depends largely on the braking conditions. However, as the further increasing of the span, the pier longitudinal horizontal rigidity is restricted by the expansion conditions. Therefore, the small resistance fastening system should be taken into consideration. Especially, if the temperature of rail reaches above 50°C, laying rail expansion adjuster is needed in order to satisfy the requirement of the continuous welded rail temperature on bridge.
机译:墩纵向水平刚度是刚性框架桥梁和连续焊接轨道的关键技术参数。纵向力的分布和梁和轨道之间的相对位移均依赖于码头的纵向水平刚度。该通道采用镇流器轨道中不同跨度刚性框架桥的对称布置,以研究墩顶纵向水平刚度的值,采用有限元方法。分析表明,当轨道温度变化的幅度小于50℃并且标称温度跨度在一定范围内时,墩纵向水平刚度的最小值在很大程度上取决于制动条件。然而,作为跨度的进一步增加,码头纵向水平刚度受到膨胀条件的限制。因此,应考虑小电阻紧固系统。特别是,如果轨道的温度达到50℃以上,则需要铺设轨道膨胀调节器,以满足连续焊接铁路温度的桥梁的要求。

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