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Evaluation of a system for measuring seal coat quality.

机译:评估密封涂层质量的系统。

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摘要

The Texas Department of Transportation (TxDOT) spends over {dollar}250 million per year to maintain almost 200,000 miles of roadway with more than 450 million vehicle miles per day. Seal coats are very important for the Department's preventive maintenance program. Seal coats are one of the most important elements of pavement maintenance because they slow down pavement deterioration. It is less expensive to seal coat roads with low traffic volumes every few years than it is to overlay or completely replace the road. Seal coats also beatify and seal the road from water. In addition, seal coats are instrumental in maintaining and recovering skid resistance which is a major safety requirement in pavement maintenance.; The purpose of this research project is to develop an objective technique to accurately evaluate pavement distresses including raveling (loss of aggregate) and excess binder (flushing or bleeding). Current methods available to evaluate seal coat distresses are very subjective and they include visual inspection by different people. This method is subject to different interpretation by the different inspectors with different levels of knowledge and experience on pavement distresses. Currently, there is no method based on equipment measurements to scientifically evaluate the performance of seal coats and reduce the subjectiveness of seal coat performance evaluations. A methodology based on texture could be an option to measure seal coat performance as affected by flushing and raveling.; Two portable tools are available for measuring pavement texture and need to be evaluated for measuring texture of seal coats, the Circular Track Meter (CTM) (ASTM E 2157 -- 01) and the Outflow Meter (OFM) (ASTM E 2380 -- 05). The CTM and the OFM provide measurements of pavement texture that has been shown to correlate with skid resistance. The CTM would be the most feasible and practical for a TxDOT inspector to carry in his or her truck. The Outflow Meter is also simple to use and it only requires water to operate. On the other hand, the CTM is several times more expensive than the OFM; it requires the use of a laptop computer, and preferably two people to operate. The relationship between the OFM and the CTM will be presented later in this report.; A factorial table of seal coat test sections based on age and traffic was defined by this research project and pavement texture data was collected using the CTM and OFM. These data were summarized to develop CTM and OFM correlations. In addition, the research developed seal coat failure criteria based on texture and makes recommendations on how to establish a systematic procedure to evaluate seal coats.
机译:得克萨斯州交通运输部(TxDOT)每年花费超过2.5亿美元,用于维护近200,000英里的车道,每天超过4.5亿车道。密封涂层对于该部的预防性维护计划非常重要。密封层是路面维护最重要的元素之一,因为它们可以减缓路面的劣化。每隔几年用很少的交通量封闭大衣道路要比覆盖或完全替换道路便宜。海豹皮还可以使水溶化并密封道路。另外,密封层有助于保持和恢复防滑性能,这是路面维护的主要安全要求。该研究项目的目的是开发一种客观的技术,以准确评估路面破损,包括破损(骨料流失)和过量的粘结剂(潮红或渗水)。当前用于评估海豹皮大衣窘迫的方法是非常主观的,包括由不同人员进行的目视检查。不同的检查员对路面遇险的知识和经验水平不同,对这种方法的解释也不同。当前,没有基于设备测量的方法来科学地评估密封涂层的性能并降低密封涂层性能评估的主观性。基于质构的方法可能是测量密封涂层性能的一种选择,该性能受冲洗和松散影响。有两种便携式工具可用于测量路面纹理,并且需要评估其用于测量密封层的纹理:圆形轨道仪(CTM)(ASTM E 2157-01)和流出仪(OFM)(ASTM E 2380-05) )。 CTM和OFM提供了路面纹理的测量,已证明与防滑性能相关。对于TxDOT检查员来说,CTM是最可行和最实用的。流出流量计也易于使用,仅需用水即可操作。另一方面,CTM的价格是OFM的几倍。它需要使用便携式计算机,最好是两个人才能操作。 OFM和CTM之间的关系将在本报告的后面介绍。该研究项目定义了基于年龄和交通量的密封层试验截面的因子表,并使用CTM和OFM收集了路面纹理数据。总结这些数据以建立CTM和OFM相关性。此外,该研究还根据质地制定了密封涂层失效标准,并就如何建立评估密封涂层的系统程序提出了建议。

著录项

  • 作者

    Martino, Mariano Miguel.;

  • 作者单位

    The University of Texas at San Antonio.$bCivil & Environmental Engineering.;

  • 授予单位 The University of Texas at San Antonio.$bCivil & Environmental Engineering.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2007
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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