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Experimental study of stoneblowing track surfacing technique

机译:浅谈浅轨道浮出技术的实验研究

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Ballast is known to be one of the most widely used materials for railtrack construction. Although ballast is comprised of crushed hard stones, it undergoes gradual and continual degradation under cyclic rail loading and requires constant maintenance. Due to the limitations of the commonly used ballast tamping technique for recovering railway track geometry, other technical solutions are currently being considered. Stoneblowing is an alternative technique of track level adjustment, that is defined as injection of the premeasured amount of small fresh stones with pressurized air under the sleepers, lifted to a desired level. This technique has been reported to lack most of the known disadvantages of tamping. However, postmaintenance behavior of ballast was found to be sensitive to the procedure aspects, thus further investigations in controlled laboratory conditions are required. This paper is focused on measurement and analysis of ballast settlement under cyclic loads after reinstating of a railway track with stoneblowing. Experimental results show that usage of stoneblowing leads to a predictable level of settlement, which remains constant even after a large number of loading cycles. Moreover, we propose a two-step stoneblowing technique and provide experimental evidence that this approach is more effective for reinstating the railway track than a conventional single step approach.
机译:众所周知,镇流器是轨道建筑最广泛使用的材料之一。尽管镇流器由压碎的硬质构成,但它在循环轨道装载下经历逐渐和连续的降解,并且需要持续维护。由于常用的镇流器夯实技术用于恢复铁路轨道几何形状,目前正在考虑其他技术解决方案。 Stoneblowing是轨道水平调节的替代技术,其被定义为注射睡眠机下的加压空气的上一个小新鲜石块的预先测量量,升到所需的水平。据报道,该技术缺乏夯实的大部分已知的缺点。然而,发现镇流器的后亲善行为对程序方面敏感,因此需要在受控实验室条件下进行进一步的研究。本文重点研究了钢轨道后循环负载下的镇流器沉降的测量和分析。实验结果表明,探测器的使用导致可预测的沉降水平,即使在大量装载周期之后,也保持恒定。此外,我们提出了一种两步的浅谈技术,并提供了实验证据,即这种方法比传统的单步方法更有效地恢复铁路轨道。

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