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Performance evaluation of 4.75-mm NMAS superpave mixture.

机译:4.75毫米NMAS超铺面混合物的性能评估。

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摘要

A Superpave asphalt mixture with 4.75-mm nominal maximum aggregate size (NMAS) is a promising, low-cost pavement preservation treatment for agencies such as the Kansas Department of Transportation (KDOT). The objective of this research study is to develop an optimized 4.75-mm NMAS Superpave mixture in Kansas. In addition, the study evaluated the residual tack coat application rate for the 4.75-mm NMAS mix overlay.;Two, hot-in-place recycling (HIPR) projects in Kansas, on US-160 and K-25, were overlaid with a 15- to 19-mm thick layer of 4.75-mm NMAS Superpave mixture in 2007. The field tack coat application rate was measured during construction. Cores were collected from each test section for Hamburg wheel tracking device (HWTD) and laboratory bond tests performed after construction and after one year in service. Test results showed no significant effect of the tack coat application rate on the rutting performance of rehabilitated pavements. The number of wheel passes to rutting failure observed during the HWTD test was dependent on the aggregate source as well as on in-place density of the cores. Laboratory pull-off tests showed that most cores were fully bonded at the interface of the 4.75-mm NMAS overlay and the HIPR layer, regardless of the tack application rate. The failure mode during pull-off tests at the HMA interface was highly dependent on the aggregate source and mix design of the existing layer material. This study also confirmed that overlay construction with a high tack coat application rate may result in bond failure at the HMA interface.;Twelve different 4.75-mm NMAS mix designs were developed using materials from the aforementioned but two binder grades and three different percentages of natural (river) sand. Laboratory performance tests were conducted to assess mixture performance. Results show that rutting and moisture damage potential in the laboratory depend on aggregate type irrespective of binder grade. Anti-stripping agent affects moisture sensitivity test results. Fatigue performance is significantly influenced by river sand content and binder grade. Finally, an optimized 4.75-mm NMAS mixture design was developed and verified based on statistical analysis of performance data.
机译:Superpave沥青混合料的标称最大集料尺寸为4.75毫米,是堪萨斯州交通运输部(KDOT)等机构的一种有前途的低成本路面养护处理方法。这项研究的目的是在堪萨斯州开发一种优化的4.75毫米NMAS Superpave混合物。此外,该研究还评估了4.75毫米NMAS混合物覆盖层的残留粘性涂料施用率。;在堪萨斯州的US-160和K-25上的两个就地热回收(HIPR)项目被覆盖了一层2007年,厚度为15到19毫米的4.75毫米NMAS Superpave混合物层。在施工过程中测量了田间粘结层的施用率。从汉堡轮跟踪装置(HWTD)的每个测试部分收集芯子,并在建造后和服役一年后进行实验室粘合测试。测试结果表明,粘性涂料的施用率对修复后的路面的车辙性能没有显着影响。在HWTD测试期间观察到的车轮车辙失效的次数取决于集料来源以及芯的原位密度。实验室拉拔测试表明,无论粘性施加速率如何,大多数芯线都在4.75毫米NMAS覆盖层和HIPR层的界面处完全粘合。在HMA接口进行拉拔测试期间的失效模式高度依赖于现有层材料的总来源和混合设计。这项研究还证实,具有高粘性涂层施涂率的覆盖层结构可能会导致HMA界面粘结失败。;使用上述材料开发了十二种不同的4.75毫米NMAS混合物设计,但使用了两种粘合剂等级和三种不同百分比的天然(河)沙。进行了实验室性能测试以评估混合物的性能。结果表明,不管粘合剂等级如何,实验室中的车辙和湿气破坏潜能均取决于骨料类型。抗剥离剂会影响湿度敏感性测试结果。疲劳性能受河砂含量和粘结剂等级的影响很大。最后,基于性能数据的统计分析,开发并验证了优化的4.75毫米NMAS混合物设计。

著录项

  • 作者

    Rahman, Farhana.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Engineering Civil.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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