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The effect of shrinkage cracks on the load bearing capacity of steel-fibre-reinforced roller-compacted-concrete pavements

机译:收缩裂缝对钢纤维加固碾压混凝土路面承载力的影响

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摘要

This paper demonstrates the effect of shrinkage cracks on the static load bearing capacity and on the fatigue performance of RCC pavements reinforced with steel fibres recycled from post-consumer tyres, with the aid of a case study. A numerical method is adopted using material properties (moisture transport, free shrinkage, mechanical and fatigue) derived from experiments. It is shown that surface micro-cracks initially develop predominantly due to differential shrinkage (curling). These micro-cracks penetrate down to approximately a quarter of the slab thickness and it is shown that they reduce the ultimate load bearing and fatigue capacity of the pavement by up to 50 %. Even though shrinkage does not initially induce visible cracks, it significantly intensifies the crack opening due to traffic load by up to 500 % for a crack width of 0.5 mm. For the case studied herein, to assure the long-term performance of the pavement the allowable stress ratio should be reduced by half, to account for the effect of shrinkage distress. This study is useful because for the first time the mechanical characteristics are coupled with the moisture transport mechanism, as well as the shrinkage and fatigue characteristics. This methodology can be used for other similar materials and geometries and can lead to general conclusions regarding the importance of shrinkage distress on the design of pavements.
机译:本文通过案例研究,证明了收缩裂纹对消费轮胎回收的钢纤维增强的RCC路面的静态承载力和疲劳性能的影响。利用从实验得出的材料特性(水分传输,自由收缩,机械和疲劳)采用数值方法。结果表明,表面微裂纹最初主要是由于差异收缩(卷曲)引起的。这些微裂纹渗透到板厚的大约四分之一,并且显示出它们可将路面的极限承载力和疲劳能力降低多达50%。即使收缩起初不会引起可见的裂纹,但对于0.5 mm的裂纹宽度,由于交通负荷,裂纹开口会显着加剧达500%。对于本文研究的情况,为确保人行道的长期性能,应将允许应力比降低一半,以解决收缩应力的影响。这项研究非常有用,因为这是首次将机械特性与水分传输机制以及收缩和疲劳特性结合在一起。这种方法可以用于其他类似的材料和几何形状,并且可以得出有关收缩对路面设计的重要性的一般结论。

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