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Development of the fracture-based flexibility index for asphalt concrete cracking potential using modified semi-circle bending test parameters

机译:使用修正的半圆弯曲试验参数开发基于裂缝的沥青混凝土裂缝性挠性指标

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Asphalt concrete (AC) pavement sustainability can be achieved by enhancing mixture durability, improving construction practices, optimizing pavement design, and maximizing the use of recycled resources to reduce life-cycle investments. Recycled materials are commonly used to improve sustain ability of AC pavement as they replace natural resources and reduce initial construction costs and greenhouse gases during the material production phase. However, net savings, in terms of environmental and economic impact, can only be realized if the performance targeted by the initial design is achieved. The use of RAP and RAS may result in a significant reduction in the demand for virgin, quarried aggregates and, more importantly, asphalt binder. However, replacing virgin materials in AC mixtures with aged, stiffer binders poses numerous technical challenges in terms of mixture volumetrics and thermal (low temperature) and flexural fatigue cracking resistance. This paper introduces a practical fracture test method to screen AC mixtures' cracking resistance using the semi-circular bending test geometry. The selection procedure of the test method is presented along with the development of a flexibility index (FI) derived from the load-displacement curves. A discussion about the effect of viscoelasticity on fracture process is provided. The results indicate positive correlation between SCB test results and other independent fatigue tests. The proposed FI reflects positive correlation with the crack velocity, indicating brittleness of the materials, obtained from the same SCB experiments. The paper also provides a validation of the proposed IL-SCB test method results, including fracture energy and flexibility index (FI), using the number of cycles to fatigue cracking failure obtained from an accelerated pavement test sections. (C) 2016 Elsevier Ltd. All rights reserved.
机译:沥青混凝土(AC)路面的可持续性可通过提高混合物的耐久性,改善施工方法,优化路面设计以及最大程度地利用可循环利用的资源来减少生命周期投资来实现。再生材料通常用于提高交流路面的可持续性,因为它们可以替代自然资源,并在材料生产阶段降低初始建设成本和温室气体。但是,仅在达到初始设计目标的性能的情况下,才能在环境和经济影响方面实现净节省。 RAP和RAS的使用可能会导致对原始石料,更重要的是沥青粘结剂的需求大大减少。但是,用老化的,更硬的粘合剂代替交流混合物中的纯净材料在混合物的体积以及耐热(低温)和抗挠曲疲劳开裂方面提出了许多技术挑战。本文介绍了一种实用的断裂试验方法,可使用半圆形弯曲试验几何形状来筛选交流混合物的抗裂性。介绍了测试方法的选择过程,以及根据载荷-位移曲线得出的柔性指数(FI)的发展。讨论了粘弹性对断裂过程的影响。结果表明,SCB测试结果与其他独立疲劳测试之间呈正相关。所提出的FI反映了与裂纹速度呈正相关,表明从相同的SCB实验获得的材料的脆性。本文还使用从加速路面试验段获得的疲劳裂纹破坏的循环次数,对提出的IL-SCB试验方法结果进行了验证,包括断裂能和挠性指数(FI)。 (C)2016 Elsevier Ltd.保留所有权利。

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