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Effect of confining pressure on ballast degradation and deformation under cyclic triaxial loading

机译:三轴循环荷载下围压对压载物降解和变形的影响

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摘要

Traditional railway foundations or substructures have become increasingly overloaded in recent years, owing to the introduction of faster and heavier trains. A lack of substructure re-engineering has resulted in maintenance cycles becoming more frequent and increasingly expensive. Two significant problems arising from increasing axle loads are differential track settlement and ballast degradation. One potential method of enhancing the substructure is to manipulate the level of ballast confinement. To investigate this possibility, a series of high-frequency cyclic triaxial tests has been conducted to examine the effects of confining pressure and deviator stress magnitude on ballast deformation (permanent and resilient) and degradation. Experimental results indicate that, for each deviator stress considered, an \u27optimum\u27 range of confining pressures exists such that degradation is minimised. This range was found to vary from 15– 65 kPa for a maximum deviator stress of 230 kPa to 50– 140 kPa when deviatoric stresses increase to 750 kPa. Ballast specimens tested at low confining pressures indicative of current in situ conditions were characterised by excessive axial deformations, volumetric dilation, and an unacceptable degree of degradation associated mainly with angular corner breakage. The results suggest that in situ lateral pressures should be increased to counteract the axle loads of heavier trains, and practical methods of achieving increased confinement are suggested.
机译:近年来,由于引入了更快,更重的火车,传统的铁路地基或下部结构变得越来越过载。缺乏对子结构的重新设计导致维护周期变得更加频繁且越来越昂贵。由增加的轴负载引起的两个重要问题是差速履带沉降和压载物退化。增强下部结构的一种潜在方法是控制压载物的限制水平。为了研究这种可能性,已经进行了一系列高频循环三轴试验,以检验围压和偏应力大小对压载变形(永久和弹性)和退化的影响。实验结果表明,对于所考虑的每个偏向应力,都存在一个\ u27optimum \ u27范围内的限制压力,以使降解降到最低。发现该范围从最大偏向应力230 kPa的15-65 kPa变化到偏向应力增加到750 kPa的50-140 kPa。在指示当前电流原位条件的低围压下测试的压载标本的特征是轴向过度变形,体积膨胀以及主要与角拐角断裂相关的不可接受的降解程度。结果表明,应增加现场侧向压力以抵消较重列车的轴载荷,并提出了实现增加限制的实用方法。

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