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Experimental Investigation on the Vibration Reduction Characteristics of an Optimized Heavy-Haul Railway Low-Vibration Track

机译:优化重式铁路低振动轨道减振特性的实验研究

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Heavy-haul railway has been developed rapidly in many countries in the world due to its great social and economic benefits. One of the key technologies for heavy-haul railway is the reduction of vibration on the track structures and its surrounding due to impact load induced by the train in service. The vibration behaviors of two kinds of low-vibration track (LVT) systems for heavy-haul railway are investigated in this paper. Firstly, two indoor full-scale low-vibration track models (new LVT and traditional LVT), which include rail, fastener, bearing block, rubber boot, track slab, and foundation base, were constructed according to design drawings. Secondly, the vibration responses of the different track components under the impact excitation of a dropping wheelset were measured. Thirdly, the time-domain characteristics of each track component of the two LVTs were compared by the acquired vibration time-history curves. Finally, the frequency-domain distribution was analyzed, and the vibration reduction performance was evaluated by the comprehensive time-frequency analysis results. The results show the new LVT has lower vibration acceleration, shorter duration of vibration period, lower vibration frequency of track components, and most importantly an obvious vibration reduction effect on the ground. The research results are useful to further optimize the design of LVT to reduce the vibration under train impact load.
机译:由于其巨大的社会和经济效益,世界上许多国家已经在世界上许多国家迅速发展了重型铁路。重箱铁路的关键技术之一是由于火车在服务中引起的冲击载荷而减少了轨道结构的振动及其周围。本文研究了两种低振动轨道(LVT)系统的振动行为(LVT)系统。首先,根据设计图纸构建,包括轨道,紧固件,轴承座,橡胶靴,轨道板,轨道板和基础底座的两个室内全级低振动轨道型号(新型LVT和传统LVT)。其次,测量不同轨道部件的振动响应在滴角的冲击激发下。第三,通过获取的振动时间历史曲线比较了两个LVT的每个轨道分量的时域特征。最后,分析了频域分布,通过综合时频分析结果评估减振性能。结果表明,新的LVT具有较低的振动加速度,振动周期持续时间较短,轨道部件的振动频率较低,以及最重要的是对地面的显而易见的减振效果。研究结果可用于进一步优化LVT的设计,以减少火车冲击负荷下的振动。

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