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首页> 外文期刊>International Journal of Fatigue >Modelling crack initiation in bituminous binders under a rotational shear fatigue load
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Modelling crack initiation in bituminous binders under a rotational shear fatigue load

机译:旋转剪切疲劳负荷下沥青粘合剂的裂纹启动

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摘要

This study aims to model fatigue crack initiation in bituminous binders. An energy-based crack initiation criterion is developed for bitumen under a rotational shear fatigue load. Based on a damage mechanics analysis of fatigue cracking process, the crack initiation is defined and local energy redistribution around crack tips due to 'factory-roof cracking is quantified. A quantitative energy criterion is proposed for the fatigue crack initiation in the bitumen using viscoelastic Griffith's theory. The crack initiation criterion is validated through comparing the predicted and measured surface energy of the bitumen. The results show that bitumen fatigue cracking under the rotational shear fatigue load can be divided into two stages: the edge flow damage and the 'factory-roof cracking. The crack initiation is dependent of the shear modulus and surface energy of bituminous binders, critical crack size, and loading amplitude. The energy-based crack initiation criterion along with the DSR fatigue tests can be potentially used to determine the material surface energy.
机译:本研究旨在模拟烟粘合剂的疲劳裂纹引发。在旋转剪切疲劳负载下为沥青开发了基于能量的裂纹启动标准。基于疲劳裂解过程的损伤力学分析,定义了裂缝启动,并定量了由于“工厂屋顶裂纹引起的裂缝尖端的局部能量再分配。用粘弹性格里菲斯理论提出了定量能量标准,用于沥青中沥青中的疲劳裂纹引发。通过比较沥青的预测和测量的表面能进行验证裂缝启动标准。结果表明,旋转剪切疲劳负荷下的沥青疲劳裂缝可分为两个阶段:边缘流量损坏和工厂屋顶开裂。裂纹启动取决于沥青粘合剂,临界裂纹尺寸和装载幅度的剪切模量和表面能。能量基裂纹启动标准以及DSR疲劳试验可以潜在地用于确定材料表面能。

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