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Mechanistic Modeling of Rutting in asphalt Pavement Analyzer (APA) Tests

机译:沥青路面分析仪(APA)测试中车辙的力学建模

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Asphalt Pavement Analyzer (APA) is one of the accelerated loaded wheel testers which allow for the Hot Mix Asphalt (HMA) specimens to be subjected to simulated moving wheel loads under controlled temperature and moisture conditions. The purpose of this paper is to present the development of a Finite Element Method (FEM) simulation technique for the APA tests. The visco-elastic and visco-plastic constitutive model for the HMA was briefly described. The FEM simulation technique was outlined. The validity of the FEM simulation technique has been presented by providing the comparisons between the FEM predictions and actual APA test results for a large number of different types of HMA mixtures, including polymer modified HMA. Furthermore, the APA test variables, including the wheel speed, the load of the wheel, and the temperature, was varied in the FEM simulation to identify the important controlling factors in testing rutting behavior of the HMA. The developed computational algorithm will be very useful in the future for linking the APA rut depth and the corresponding field rut depth found in the actual pavement under site specific traffic and environment conditions.
机译:沥青路面分析仪(APA)是加速加载的车轮测试仪之一,它可使热拌沥青(HMA)试样在受控的温度和湿度条件下经受模拟的活动车轮载荷。本文的目的是介绍用于APA测试的有限元方法(FEM)仿真技术的发展。简要描述了HMA的粘弹本构模型。概述了有限元模拟技术。通过对大量不同类型的HMA混合物(包括聚合物改性的HMA)进行FEM预测与实际APA测试结果之间的比较,可以证明FEM模拟技术的有效性。此外,在有限元模拟中改变了APA测试变量,包括车轮速度,车轮负载和温度,以识别测试HMA车辙行为的重要控制因素。将来,在特定地点的交通和环境条件下,开发的计算算法对于将APA车辙深度和实际路面中发现的相应场车辙深度联系起来非常有用。

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