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Evaluation of Alternative Laboratory Aging Methods of Asphalt Rubber Friction Courses

机译:沥青橡胶摩擦课程替代实验室老化方法评价

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Long term aging, or the oxidation and subsequent stiffening of hot mix asphalt (HMA) mixtures, is a contributing cause of the pavement's performance loss. Laboratory testing protocols simulating field aging characteristics, such as SHRP-A-417, have been developed to test asphalt mixtures in order to evaluate their aging resistance in the field. However, the SHRP-A-417 protocol requires some specialized equipment to age open graded mixtures. This study focused on evaluating alternative aging methods for Asphalt Rubber Friction Course (ARFC) mixtures. Compacted laboratory specimens (cores) as well as loose mixtures (pan) were aged under similar temperatures and time durations. Aging effects were assessed using the E* dynamic modulus test and the modular aging ratio developed in this study. Specimen geometry, air voids, and compaction parameters were also examined before and after the aging process to evaluate the effectiveness of the aging procedures. The core aging procedure proved to be a better alternative to the pan aging method; pan aging was ineffective in simulating aging characteristics.
机译:长期老化或热混合沥青(HMA)混合物的氧化和随后的加强,是路面性能损失的贡献原因。已经开发出模拟现场老化特性,例如SHRP-A-417的实验室测试协议,以测试沥青混合物以评估它们在该领域的老化抗性。然而,SHRP-A-417协议需要一些专用设备来年龄开放分级混合物。本研究重点研究了沥青橡胶摩擦课程(ARFC)混合物的替代老化方法。紧凑的实验室标本(核心)以及松散的混合物(锅)在类似的温度和时间持续时间下老化。使用E *动态模量试验和本研究开发的模块化衰老比评估老化效果。在老化过程之前和之后还检查了试样几何,空隙和压实参数,以评估老化程序的有效性。核心老化程序证明是泛老化方法的更好替代;在模拟老化特征方面是无效的。

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