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首页> 外文期刊>Materials and Structures >Investigation of asphalt concrete rutting mechanisms by X-ray computed tomography imaging and micromechanical finite element modeling
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Investigation of asphalt concrete rutting mechanisms by X-ray computed tomography imaging and micromechanical finite element modeling

机译:X射线计算机断层摄影成像和微机械有限元建模研究沥青混凝土车辙的机理

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摘要

This paper systematically investigates the changes in asphalt concrete (AC) microstructure caused by full-scale accelerated pavement testing with a heavy vehicle simulator (HVS), using X-ray computed tomography images taken before and after HVS rutting tests. A viscoelastic micromechanical finite element modeling was also used to investigate effects of bitumen mastic and aggregate skeleton properties on shear resistance. The primary purpose was to determine the reasons behind the earlier failure of the rubberized gap graded AC mix used in the test compared to the polymer modified dense graded mix also included in the experiment. Shear related deformation appears to control the long term rutting performance of the test sections while densification was primarily an initial contributor at the very early stages of trafficking. A high concentration of aggregate interlock in the polymer modified mix, as a result of the dense gradation and larger aggregate sizes, appears to have resulted in greater dissipation of shear stresses and therefore greater shear resistance. The lack of this interlocking effect for the rubberized gap graded mix is proposed to have caused the earlier failure on HVS test sections.
机译:本文使用在HVS车辙测试之前和之后拍摄的X射线计算机断层扫描图像,系统地研究了由重型车辆模拟器(HVS)进行的全面加速路面测试引起的沥青混凝土(AC)微观结构的变化。粘弹性的微机械有限元模型也被用来研究沥青胶泥和骨料骨架性能对抗剪强度的影响。主要目的是确定与试验中也包括的聚合物改性致密梯度混合料相比,试验中使用的橡胶间隙梯度AC混合料较早失效的原因。与剪切有关的变形似乎可以控制测试部分的长期车辙性能,而致密化主要是在贩运的早期阶段的最初贡献。由于致密的渐变和较大的集料尺寸,聚合物改性混合物中的高集料互锁浓度似乎导致了更大的剪切应力耗散,因此也导致了更大的剪切阻力。有人认为,对于胶接间隙分级混合料,这种互锁效应的缺乏导致了HVS试验段的早期失效。

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