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Effects of design parameters and moisture conditions on interface bond strength between thin friction course (TFC) and underlying asphalt pavements

机译:设计参数和水分条件对薄摩擦路线(TFC)和底层沥青路面界面粘合强度的影响

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摘要

As a new pavement surface treatment, thin friction course (TFC) is mixed with asphalt emulsion, SBR modifier, single particle size basalt aggregate, and cement. In this study, a test apparatus derived from the pure direct shear test was proposed to investigate the effects of design parameters and moisture conditions on the interface strength. Specifically, the design parameters include the tack coat application rates, the material compositions of TFC, and the texture depths of the underlying pavement. Finally, the analysis of variance (ANOVA) was conducted. According to the results, the increased application rate of tack coat and texture depth of underlying pavement could improve the interface bonding performance. The existence of moisture degraded the bond strength between TFC and the underlying pavement. The increased tack coat application rate could mitigate the detrimental effects of moisture conditions on the interface bond strength. In addition, the optimized material compositions of TFC can only strengthen the interface bond strength slightly. To sum up, the tack coat application rate shows the most significant effect on the interface bond strength, followed by the texture depths of the underlying pavement surface and moisture conditions. Furthermore, the interaction of texture depth and tack coat application rate also has a significant influence on interface bonding performance between TFC and the underlying pavement surface. (C) 2020 Published by Elsevier Ltd.
机译:作为新的路面处理,薄摩擦课程(TFC)与沥青乳液,SBR改性剂,单粒径玄武岩骨料和水泥混合。在本研究中,提出了一种衍生自纯直接剪切试验的测试装置,以研究设计参数和水分条件对界面强度的影响。具体地,设计参数包括Tack涂层施用速率,TFC的材料组合物,以及底层路面的纹理深度。最后,进行了差异分析(ANOVA)。根据结果​​,粘性涂层和纹理深度的施加率提高可以提高界面粘接性能。水分的存在降低了TFC和底层路面之间的键合强度。增加的泰克涂层申请率可能会减轻水分条件对界面粘合强度的不利影响。此外,TFC的优化材料组合物只能略微加强界面粘合强度。总而言之,Tack涂层申请率显示对界面粘合强度最显着的影响,其次是底层路面表面和水分条件的纹理深度。此外,纹理深度和粘性涂层涂覆率的相互作用也对TFC和下面的路面表面之间的界面粘合性能产生了显着影响。 (c)2020由elestvier有限公司发布

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