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Use of fine aggregate matrix for computational modeling of low temperature fracture of asphalt concrete

机译:细集料矩阵在沥青混凝土低温断裂计算模型中的应用。

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In this study, a discrete element computational model is applied to simulate the fracture behavior of asphalt mixtures at low temperatures. In this model, coarse aggregates are explicitly represented by rigid spherical particles. The bonds that connect these particles represent the fine aggregate matrix (FAM), which is defined as the combination of asphalt binder and fine aggregates. The bending beam rheometer (BBR) tests are performed to determine the strength and Young's modulus of FAM at low temperatures. The model is then used to simulate the semi-circular bend (SCB) tests on the mixtures. The model is verified by a series of BBR and SCB tests on both conventional and graphite nano-platelet modified asphalt materials. The comparison between the experimental and simulated results indicates that the peak load capacity of the SCB specimens is primarily governed by the tensile strength of the FAM. However, in order to capture the entire load-displacement curve of the SCB specimens, one needs to employ a softening constitutive model of the FAM, which requires the information on itsfracture energy. Several experimental methods for measuring the fracture energy of FAM are discussed for future prediction of the complete load-displacement response of asphalt mixtures at low temperatures.
机译:在这项研究中,采用离散元计算模型来模拟沥青混合料在低温下的断裂行为。在此模型中,粗粒料由刚性球形颗粒明确表示。连接这些颗粒的键代表细骨料基质(FAM),其定义为沥青粘合剂和细骨料的组合。进行弯曲束流变仪(BBR)测试以确定低温下FAM的强度和杨氏模量。然后将模型用于模拟混合物的半圆弯曲(SCB)测试。通过常规和石墨纳米片改性沥青材料的一系列BBR和SCB测试验证了该模型。实验结果和模拟结果之间的比较表明,SCB试样的峰值载荷能力主要受FAM的拉伸强度支配。但是,为了捕获SCB试样的整个载荷-位移曲线,需要采用FAM的软化本构模型,这需要有关其断裂能的信息。讨论了几种测量FAM断裂能的实验方法,以预测未来沥青混合料在低温下的完全荷载-位移响应。

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