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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Deformation and Degradation Mechanisms of Railway Ballast under High Frequency Cyclic Loading
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Deformation and Degradation Mechanisms of Railway Ballast under High Frequency Cyclic Loading

机译:高频循环荷载下铁路道Ball的变形与降解机理

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摘要

The increased demand for higher speeds and increased freight capacity in railroad transportation exacerbates the rate of ballast degradation that leads to unacceptable track deformation and frequent maintenance. In response, a series of large-scale cyclic triaxial tests was performed to investigate the combined effect of train speed (frequency), axle load, and confinement on the deformation and degradation of ballast. In these tests, the load frequency f was varied from 5 to 60 Hz to simulate train speeds of 40-400 km/h. Two sets of deviator stress magnitude q_(max,cyc) (230 and 370 kPa) were applied to resemble axle loads of 25 and 40 t, respectively, and the effect of three levels of confining pressure σ′_3 (10, 30, and 60 kPa) was examined. The results indicate that three distinct categories of permanent deformation mechanisms exist at various levels of f, q_(max,cyc), and σ′_3. Ballast degradation was more pronounced at higher f, and it had a more profound effect on cyclic densification. The resilient modulus also increased with an increase of f, q_(max,cyc), σ′_3 and number of load cycles (N). An empirical relationship for the dynamic amplification factor (DAF) was proposed to properly reflect the role of train speed on axle load.
机译:铁路运输中对更高速度的需求的增加和货运能力的增加,加剧了道ball的退化速度,从而导致了不可接受的轨道变形和频繁的维护。作为响应,进行了一系列的大型三轴循环试验,以研究列车速度(频率),轴载荷和约束对道ast变形和降解的综合影响。在这些测试中,负载频率f在5到60 Hz之间变化,以模拟40-400 km / h的列车速度。分别应用两组偏斜应力幅值q_(max,cyc)(230和370 kPa)分别模拟25 t和40 t的车轴载荷,以及三级约束压力σ'_3(10、30和60 kPa)。结果表明,在f,q_(max,cyc)和σ'_3的不同水平上存在三种不同类别的永久变形机制。较高的f时,镇流器的降解更为明显,并且对循环致密化的影响更大。弹性模量也随着f,q_(max,cyc),σ'_3和负载循环次数(N)的增加而增加。提出了动态放大因子(DAF)的经验关系,以正确反映列车速度对车轴负载的作用。

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