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Experimental and numerical investigations on the shear behaviour of recycled railway ballast

机译:再生铁路道ast的剪切特性试验与数值研究

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摘要

Ballast degradation is frequently observed under cyclic loading, and results in bearing capacity and drainage problem of ballast track. To keep the stability and safety, periodical maintenances are needed, such as cleaning and replacement, which produce a huge amount of wasted ballast. Thus, reusing the deteriorated ballast can become a considerable method for sustainable railway development and environment protection. One applications is adding the cleaned deteriorated ballast (i.e. recycled ballast) into fresh ballast. Furthermore, it is common situation that applying the mixture of fresh and deteriorated ballast during the railway operation. To study the mechanical behaviour of this mixture and find out the criterion weight proportion of the recycled ballast, a series of large direct shear tests were performed with different weight proportions (0%, 10%, 20%, 30%, 40%, and 50%) of recycled ballast mixed into fresh ballast under different normal stresses (50, 100 and 200 kPa). In addition, a numerical simulation based on discrete element method (DEM) was used to illustrate the shear strength, contact forces, coordination numbers and displacements of ballast particles. Results show that the shear strength reduction of the mixture is insignificant, when mixed with less than 30% recycled ballast. With the recycled ballast proportion increasing, the shear strength and coordination number reduce and the displacements get larger. This research provides a foundation for the application of recycled ballast, and on the other hands, adding fresh ballast can be a solution to reinforce deteriorated ballast bed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:经常在循环载荷下观察到道ast的降解,并导致道capacity的承载能力和排水问题。为了保持稳定性和安全性,需要定期维护,例如清洁和更换,这会产生大量浪费的压载物。因此,重用劣化的道ast可以成为铁路可持续发展和环境保护的重要方法。一种应用是将清洁的劣化镇流器(即再生镇流器)添加到新鲜镇流器中。此外,通常的情况是在铁路运营期间使用新鲜的和劣化的压载物的混合物。为了研究这种混合物的机械性能并找出再生镇流器的标准重量比,进行了一系列不同重量比(0%,10%,20%,30%,40%和在不同的法向应力(50、100和200 kPa)下,将50%的再生镇流器混入新鲜镇流器中。此外,基于离散元方法(DEM)的数值模拟被用来说明抗压强度,接触力,配位数和压载颗粒的位移。结果表明,当与少于30%的再生压载物混合时,混合物的剪切强度降低不明显。随着再生压载比的增加,剪切强度和配位数降低,位移变大。这项研究为再生压载物的应用提供了基础,另一方面,添加新鲜压载物可以作为加固劣化压载物床的解决方案。 (C)2019 Elsevier Ltd.保留所有权利。

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