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首页> 外文期刊>Australian Geomechanics >USE OF DIGITAL IMAGING FOR GRADATION AND BREAKAGE OF RAILWAY BALLAST
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USE OF DIGITAL IMAGING FOR GRADATION AND BREAKAGE OF RAILWAY BALLAST

机译:使用数字成像进行铁路道ALL的平移和破坏

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摘要

The foundation of ballasted railway usually consists of a graded layer of granular media of ballast placed above naturally deposited subgrade. The ballast layer is responsible for limiting the vertical stress magnitudes applied to the weaker subgrade and also prevents the vertical and lateral train-induced sleeper movements. In recent years, the progressive use of faster and heavier trains has compromised the ability of ballast to resist such movements due to the increased magnitude of ballast breakage (degradation). Therefore, accurate determination of ballast breakage is important. The amount of ballast breakage can be estimated by comparing the gradation (particle size distribution) curves of fresh and degraded ballast, using a ballast breakage index. However, the Australian railway authorities currently rely on the visual inspection for estimating ballast breakage. Despite the fact that the visual inspection is convenient, as it does not require transport of ballast samples or testing, it is subjective and can lead to uneconomical maintenance cycles. In this paper, an attempt is made to utilise the digital imaging technique for gradation analysis and breakage estimation of ballast. The technique is fast and convenient, can be applied to both the laboratory and field conditions and, hence, can be used successfully to replace the visual inspection of ballast breakage.
机译:压载铁路的基础通常由位于自然沉降路基上方的压载粒状介质的渐变层组成。压载层负责限制施加在较弱路基上的垂直应力大小,并防止垂直和水平方向的列车引起的轨枕运动。近年来,由于压载物破损(退化)的幅度增加,越来越快和较重的列车的逐步使用已经损害了压载物抵抗这种运动的能力。因此,准确确定镇流器破损很重要。压载物破损的量可以通过使用压载物破损指数比较新鲜的和降解的压载物的等级(粒度分布)曲线来估计。但是,澳大利亚铁路当局目前依靠目视检查来估计压载破坏。尽管目视检查很方便,因为它不需要运输压载样品或进行测试,但它是主观的,可能导致不经济的维护周期。本文尝试将数字成像技术用于镇流器的灰度分析和破损估计。该技术快速简便,可应用于实验室和现场条件,因此可成功替代目视检查镇流器破损。

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