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Experimental Evaluation of a Simple Contact Model Containing Two Elastic Particles Bonded by a Thin Layer of Viscoelastic Binder

机译:包含两个由粘弹性粘合剂薄层粘结的弹性颗粒的简单接触模型的实验评估

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This paper presents an experimental study on the aggregate contact behavior in asphalt mixture. As a three-phase material composed of aggregates, asphalt binder, and air voids, asphalt mixture is considered as a viscoelastic material at a low stress level. The behavior of the mixture depends largely on the interaction among different components. A contact model between two aggregates is very important for understanding the deformation mechanism of the mixture. In this study, a contact model between two aggregates was reviewed in details. A closed-form time-dependent relationship between the contact forces and the relative particle/binder movements was derived. An experimental test was designed to evaluate the model which contains two elastic particles bonded by a thin layer of asphalt binder. The displacement and resistant force of the aggregate-binder system under uniaxial compression loading were documented using a cabinet X-ray tomography system. The effectiveness of the model was evaluated by comparing the experimental results with the theoretical model predictions. It was found that the model performs better when the thickness of binder is thinner. Polynomial regression equations are more suitable to fit the model-predicted results with experimental results. Selection of the model parameters is also critical to the performance of the model. The effect of the binder film thickness on the aggregate-aggregate contact was also discussed with different binder layer thicknesses. It was found that the stiffness of the aggregate-binder-aggregate system increases as the bonding layer gets thinner, which indicates that optimum asphalt content is very important to the mix design of asphalt concrete.
机译:本文对沥青混合料中的骨料接触行为进行了实验研究。作为由骨料,沥青结合料和气孔组成的三相材料,沥青混合料被认为是低应力水平下的粘弹性材料。混合物的行为很大程度上取决于不同组分之间的相互作用。两种聚集体之间的接触模型对于理解混合物的变形机理非常重要。在这项研究中,详细审查了两个集合体之间的联系模型。得出了接触力和相对的颗粒/粘合剂运动之间的时间依赖的闭合形式。设计了一个实验测试来评估该模型,该模型包含两个被沥青粘合剂薄层粘合的弹性颗粒。使用机柜X射线断层扫描系统记录了骨料-粘合剂系统在单轴压缩载荷下的位移和阻力。通过将实验结果与理论模型预测值进行比较,评估了模型的有效性。发现粘合剂的厚度越薄,该模型的性能越好。多项式回归方程更适合于将模型预测的结果与实验结果进行拟合。模型参数的选择对于模型的性能也至关重要。在不同的粘合剂层厚度下,还讨论了粘合剂膜厚度对聚集体-聚集体接触的影响。研究发现,随着粘结层变薄,骨料-粘结剂-骨料体系的刚度增加,这表明最佳沥青含量对沥青混凝土的配合比设计非常重要。

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