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Experimental Testing and Finite-Element Modeling to Evaluate the Effects of Aggregate Angularity on Bituminous Mixture Performance

机译:用于评估集料角度对沥青混合料性能影响的实验测试和有限元模拟

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摘要

This study evaluates the effects of aggregate angularity in bituminous mixtures. Previous studies have predominantly focused on the effects of aggregate angularity on the resistance to permanent deformation, while little work has investigated the role of aggregate angularity related to mixture volumetrics and fatigue fracture performance. To investigate the effect of aggregate angularity on mixture performance and characteristics, five mixes with different combinations of coarse and fine aggregate angularity are evaluated by performing the uniaxial static creep test and the indirect tensile fracture energy test. The asphalt pavement analyzer test is also performed with five-year field project mixtures. Fracture energy test results are then incorporated with finite-element simulations of virtual specimens produced to explore the detailed mechanisms of cracking related to the aggregate angularity. Rutting performance test results indicate that higher angularity in the mixture improves rut resistance due to better aggregate interlocking. The overall effect of angularity on the mixtures’ resistance to fracture damage is positive because aggregate blends with higher angularity require more binder to meet mix design criteria, which mitigates cracking due to increased viscoelastic energy dissipation from the binder, while angular particles produce a higher stress concentration that results in potential cracks. Finite-element simulations of mixture microstructure support findings from experimental tests.
机译:这项研究评估了沥青混合物中聚集角的影响。先前的研究主要集中在骨料棱角对永久变形抗力的影响上,而很少有研究研究骨料棱角与混合体积和疲劳断裂性能有关的作用。为了研究骨料棱角度对混合物性能和特性的影响,通过进行单轴静态蠕变试验和间接拉伸断裂能试验,评估了粗骨料细度和细骨料棱角度不同组合的五种混合物。沥青路面分析仪测试也使用五年的现场项目混合物进行。然后将断裂能测试结果与虚拟样品的有限元模拟结合起来,以探索与聚集角相关的详细开裂机理。车辙性能测试结果表明,由于更好的骨料互锁,混合物中较高的角度可改善车辙阻力。棱角度对混合物的抗断裂破坏性的总体影响是积极的,因为具有较高棱角度的骨料共混物需要更多的粘结剂才能达到混合物设计标准,从而减轻了由于粘结剂中粘弹性能耗散增加而导致的开裂,而棱角颗粒产生的应力更高导致潜在裂纹的集中。混合物微观结构的有限元模拟支持了实验测试的结果。

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