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首页> 外文期刊>MATEC Web of Conferences >Use of LTPP Data to Quantify Moisture Damage under Crack Sealing and Surface Treatments in Asphalt Pavements
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Use of LTPP Data to Quantify Moisture Damage under Crack Sealing and Surface Treatments in Asphalt Pavements

机译:LTPP数据用于量化沥青路面裂缝密封和表面处理下的水分破坏

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Crack sealing and seal coats are used to prevent the ingress of water into the pavement, thus delaying its deterioration. Yet, earlier studies indicated that sealing pavements in areas with high ground water table (GWT) prevented moisture from escaping upwards through the cracks of asphalt pavements, therefore, accelerating stripping. The objectives of this study were to determine whether these treatments contribute to stripping in Asphalt Concrete (AC) and/or moisture accumulation in the base and to evaluate the effect of GWT, rain, and traffic on subsurface failures under these treatments. In this study, nine test sections included in the Long-Term Pavement Performance (LTPP) program and several field chip seal projects in Louisiana were analyzed. Results indicated that these treatments do not contribute to stripping. However, the cause of common stripping under these treatments in the Southern United States is moisture entrapment under the AC layer under shallow GWT conditions, which is also the key contributor to stripping under unsealed sections.
机译:裂缝密封层和密封层用于防止水进入人行道,从而延缓其恶化。但是,较早的研究表明,在地下水位较高的地区,人行道的密封可以防止水分通过沥青路面的裂缝向上逸出,从而加速剥离。这项研究的目的是确定这些处理是否有助于沥青混凝土(AC)的剥离和/或基层中的水分积累,并评估在这些处理下GWT,雨水和流量对地下破坏的影响。在这项研究中,分析了长期路面性能(LTPP)计划中包括的9个测试部分以及路易斯安那州的几个现场芯片密封项目。结果表明,这些处理对剥离没有帮助。但是,在美国南部进行这些处理的常见原因是浅层GWT条件下AC层下的水分夹带,这也是造成未密封部分剥离的关键因素。

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