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Vertical load distribution in ballasted railway tracks with steel slag and limestone ballasts

机译:带钢渣和石灰石道ball的压载铁路轨道的垂直载荷分布

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Over the last few years, use of steel slag ballast as an appropriate material instead of conventional stone ballast has gotten more attention by railway owners in various countries. In this regard, one of the technical concerns is the differences of vertical load distribution in these two materials. This factor has a significant influence on track safety and performance. In the present study, the behaviour of both kinds of ballast materials under vertical loading has been compared using a 50-meters test track including separate parts of both ballast materials. Rail support modulus and contact pressure of sleepers and ballast were obtained via a series of field tests. In order to determine the rail support modulus, the modified Talbot method has been used. The track was loaded by both light and heavy six-axle car bodies with 300 and 1350 kN weights, respectively; furthermore, a specific sleeper which was equipped by load cells was used to measure the contact pressure of sleepers and ballast under mentioned heavy car body in both types of ballast material. Results show that, with the same track superstructure and subgrade condition, the rail support modulus of test track in steel slag ballast section is 1.64 times greater than that of limestone ballast, and the compressive contact pressure of sleeper and ballast in limestone ballast was almost 1.39 times greater than steel slag ballast.
机译:在过去的几年中,钢渣压舱物代替传统的石质压舱物作为合适的材料已受到各国铁路所有者的更多关注。在这方面,技术关注点之一是这两种材料的垂直载荷分布的差异。这个因素对轨道的安全性和性能有重大影响。在本研究中,使用包括两种压载材料的单独部分的50米测试轨道,比较了两种压载材料在垂直载荷下的行为。轨道支撑模量以及轨枕和道ball的接触压力是通过一系列现场测试获得的。为了确定轨道支撑模量,已使用改进的Talbot方法。轨道分别由重量分别为300和1350 kN的轻型和重型六轴车身装载。此外,在两种类型的压载材料中,使用配备有称重传感器的特定轨枕来测量在上述重型车身下的轨枕和压载物的接触压力。结果表明,在相同轨道上部结构和路基条件下,钢渣压载区试验轨道的轨道支撑模量是石灰石压载物的1.64倍,轨枕和压载物在石灰石压载物中的压接压力接近1.39。比钢渣镇流器大十倍。

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