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Characterization of ballast particle's movement associated with loading cycle, magnitude and frequency using SmartRock sensors

机译:使用Smartrock传感器的装载循环,幅度和频率相关的镇流器粒子的表征

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摘要

SmartRock has recently been adopted in obtaining the particle-scale characteristics of ballast track and gives microscopic explanation of track performance under cyclic loads, such as degradation and reinforcement. We notice that the contact state of individual ballast particles changes with loading cycles, which in reverse gives rise to different particle movements. The changes of contact state and particle movements may accumulate as loading cycle increases and could be considerable. This makes the response of individual particles uncertain and thus brings practical difficulties in evaluating the performance of ballast track via particle-scale characteristics, especially for long-term loading. In order to learn more about the response uncertainty of individual particles, this study conducts a full size model test to investigate the variation of particle movement and inter-particle normal contact force with loading cycle, amplitude as well as frequency by using SmartRocks. The equivalent axle load ranges from 14 to 36 t, the frequency of the cyclic loading varies from 1 to 18 Hz. Two smart rocks were placed below the sleeper end and the shoulder region respectively. It is found that the long-term variation of particle's movements and contact force with loading cycle show obvious fluctuation due to the continuous accumulated changes of particle's contact state. While particle's movements are generally stable during short-term loading. The movements of SmartRock beneath sleeper end are positively correlated with loading magnitude and frequency, nevertheless also shows a characteristic independent on loading cycles, magnitude as well as frequency: particles' rotation in horizontal plane is mainly permanent rotation (accumulated rotation), while particle's rotation in planes perpendicular to the lateral and longitudinal directions is mainly recoverable rotation. The influences of loading magnitude and frequency on ballast particle movements are found different. The results provide effective particle-scale indicators for investigations related to ballast track.
机译:最近通过获得镇流器轨道的粒度特性来采用Smartrock,并在循环载荷下给出轨道性能的显微镜解释,例如劣化和加固。我们注意到各个压载粒子的接触状态随装载循环而变化,这反向产生不同的颗粒运动。接触状态和颗粒运动的变化可以累积,因为加载循环增加并且可以是相当大的。这使得各个颗粒的响应不确定,因此在通过粒度特征评估镇流器轨道的性能方面具有实际困难,特别是对于长期装载。为了了解有关个体颗粒的响应不确定性的更多信息,本研究进行全尺寸模型试验,以研究通过使用Smartrocks的装载循环,幅度以及频率的粒子运动和粒子间正常接触力的变化。等效轴载荷范围为14至36 t,循环负载的频率从1到18 Hz变化。将两个智能岩石分别放在卧式端部和肩部区域下方。结果发现,由于粒子接触状态的连续累积变化,粒子运动和接触力的长期变化显示出明显的波动。虽然在短期加载期间粒子的运动通常稳定。卧式下方的Smartrock的运动与负载幅度和频率呈正相关,频率也显示出与装载周期无关的特征,幅度和频率:粒子在水平面的旋转主要是永久性旋转(累积旋转),而粒子的旋转在垂直于横向和纵向方向的平面中主要是可恢复的旋转。找到了载荷幅度和频率对镇流器颗粒运动的影响。结果为与镇流器轨道相关的调查提供了有效的粒子级指标。

著录项

  • 来源
    《Granular matter》 |2020年第3期|63.1-63.13|共13页
  • 作者单位

    Tongji Univ Key Lab Rd & Traff Engn Minist Educ Shanghai 201804 Peoples R China|Tongji Univ Shanghai Key Lab Rail Infrastruct Durabil & Syst Shanghai 201804 Peoples R China;

    Tongji Univ Shanghai Key Lab Rail Infrastruct Durabil & Syst Shanghai 201804 Peoples R China;

    Tongji Univ Key Lab Rd & Traff Engn Minist Educ Shanghai 201804 Peoples R China|Tongji Univ Shanghai Key Lab Rail Infrastruct Durabil & Syst Shanghai 201804 Peoples R China;

    Tongji Univ Shanghai Key Lab Rail Infrastruct Durabil & Syst Shanghai 201804 Peoples R China;

    Tongji Univ Shanghai Key Lab Rail Infrastruct Durabil & Syst Shanghai 201804 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Railway ballast; Particle movement; Permanent and recoverable rotation; Indoor experiment;

    机译:铁路镇流器;颗粒运动;永久和可恢复的旋转;室内实验;
  • 入库时间 2022-08-18 21:11:17

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