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作 者:马旭峰[1] 谢铠泽[1] 王伟平[1] 王平[1]
机构地区:[1]西南交通大学高速铁路线路工程教育部重点实验室,成都610031
出 处:《铁道标准设计》2015年第1期21-24,共4页Railway Standard Design
基 金:国家自然科学基金委高铁联合基金重点项目(U1234201)
摘 要:基于梁轨相互作用原理,建立桥上无缝线路线桥墩一体化模型,研究主桥铺设小阻力扣件下单线连续梁桥墩纵向水平刚度的限值。研究结果表明:在主桥铺设小阻力扣件下,钢轨伸缩附加应力最大值与连续梁温度跨度及桥墩刚度近似呈线性关系;轨道结构稳定性和钢轨断缝对桥墩刚度限值均不起控制作用,桥墩刚度限值仅由钢轨强度控制;连续梁温度跨度较大时,桥墩刚度限值与温度跨度近似呈线性关系,对于温度跨度为240 m的连续梁,轨温变化幅度为50℃、40℃和30℃时,连续梁固定支座处桥墩刚度限值分别为1 282、522、226 k N/(cm·线)。The line-bridge-pier integration model of continuous welded rail is established based on the beam-track interaction principle. Then the limits of longitudinal horizontal stiffness of single continuous beam piers are studied with the main bridge equipped with small resistance fasteners. The results show that:when the main bridge is laid with small resistance fasteners, the maximal value of additional rail expansion and contraction force approximately demonstrate linear relationship with the value of expansion length of continuous beam and the value of stiffness of continuous beam pier; stability of the track structure and rail joints do not produce controlling effect on the limits of pier stiffness, it is controlled only by the strength of rail;the limits of pier stiffness and temperature range are approximately turn to be in linear relation when the temperature range of continuous beam is little bigger. For 240 m of the temperature range, when the rail temperature is in the range of 50 ℃、40 ℃ and 30 ℃, the limits of stiffness of fixes steady pier of continuous beam bridge are 1282 , 522 and 226 kN/( cm · line ) respectively.
关 键 词:无缝线路 小阻力扣件 桥墩纵向水平刚度 连续梁桥
分 类 号:U213.9[交通运输工程—道路与铁道工程] U213.53
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