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Influences by Air Voids on the Low-Temperature Cracking Property of Dense-Graded Asphalt Concrete Based on Micromechanical Modeling

机译:基于微机械造型的空气空隙对致密集沥青混凝土低温开裂性能的影响

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摘要

This study characterized the impacts of air voids on the low-temperature cracking behavior of dense-graded asphalt concrete. Virtual low-temperature bending beam test for dense-graded asphalt concrete was built and executed by discrete element method and PFC3D (particle flow code in three dimensions). Virtual tests were applied to analyze the impacts by content, distribution, and size of air voids on the low-temperature properties of dense-graded asphalt concrete. The results revealed that higher air void content results in worse low-temperature property of dense-graded asphalt concrete, especially when the air void content exceeds the designed air content; even with the same designed air void content, different distributing condition of air voids within asphalt concrete leads to different low-temperature properties of asphalt concrete, especially when the air void content in the central-lower part of testing sample varies. Bigger size of single air void which tends to form interconnected air voids within asphalt concrete has more harmful impacts on the low-temperature properties of asphalt concrete. Thus, to achieve satisfied low-temperature properties of dense-graded asphalt concrete, it is critical to ensure the designed air void content, improve the distribution of air voids, and reduce the interconnected air voids for dense-graded asphalt concrete.
机译:本研究表征空气空隙对致密分级沥青混凝土低温开裂行为的影响。虚拟低温弯曲梁测试的密集分级沥青混凝土由离散元件方法和PFC3D(三维颗粒流代码)构建和执行。应用虚拟测试来分析空中空隙的内容,分布和尺寸对致密分级沥青混凝土的低温性能的影响。结果表明,较高的空隙含量导致致密分级沥青混凝土的低温性能更差,特别是当空隙含量超过设计的空气含量时;即使具有相同的设计空气空隙含量,沥青混凝土内的空隙的不同分布条件也导致沥青混凝土的不同低温性能,特别是当测试样品的中间下部空隙含量变化时。倾向于在沥青混凝土中形成互连空隙的单空隙尺寸更大,对沥青混凝土的低温性能产生了更有害的影响。因此,为了实现致密分级沥青混凝土的满足低温性能,确保设计的空气空隙含量,改善空隙的分布,以及减少密集渐变沥青混凝土的互联空隙是至关重要的。

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