首页> 外文会议>ASME joint rail conference;JRC2010 >INFLUENCING FACTORS OF DYNAMIC PERFORMANCE OF JOINTLESS TURNOUT ON BRIDGE IN HIGH-SPEED RAILWAY
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INFLUENCING FACTORS OF DYNAMIC PERFORMANCE OF JOINTLESS TURNOUT ON BRIDGE IN HIGH-SPEED RAILWAY

机译:高速铁路桥梁无缝道岔动态性能的影响因素

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Taking the case of 18# turnout (350km/h) laid on 6><32m continuous girder, a dynamic model for coupling system of vehicle and jointless turnout on bridge was established to analyze the factors that affected dynamic performance of jointless turnout on bridge, and several aspects were taken into consideration, i.e. train's running quality, rail stress of turnout, vibration of turnout and bridge, and deformation, etc. It is shown that influenced by vibration and deformation of bridge, the train, turnout and bridge form a coupling vibration system, whose dynamic responses are stronger than those caused by train/turnout interaction on subgrade. Wheel/rail contact of turnout zone (especially the frog) has great effect on dynamic responses of jointless turnout on bridge, thus the nose rail height of frog should be optimized to mitigate the wheel load transition and its longitudinal gradient. When a train is passing a jointless turnout on bridge, a reasonable vertical stiffness for bridge is the key to keep its safety and comfort; as for the 32m continuous girder, the ratio of deflection to span should be
机译:以6#<32m连续梁上18#道岔(350km / h)为例,建立了车辆与桥梁无缝道岔耦合系统的动力学模型,分析了影响桥梁无缝道岔动力性能的因素,并考虑了列车的运行质量,道岔的钢轨应力,道岔和桥梁的振动以及变形等方面。表明,在桥梁的振动和变形的影响下,列车,道岔和桥梁形成了耦合。振动系统,其动力响应比路基上的列车/道岔相互作用引起的动力响应要强。道岔区(尤其是青蛙)的轮轨接触对桥梁上的无缝道岔的动力响应有很大影响,因此应优化青蛙的前轨高度,以减轻车轮载荷的过渡及其纵向梯度。当火车通过桥上的无缝道岔时,保持桥的合理垂直刚度是保持其安全性和舒适性的关键。对于32m连续梁,在ZK载荷(中国标准)下挠度与跨度之比应小于1/9000。

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