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Interlayer Working Conditions Classification and Treatment Measures of Airport Asphalt Pavement Overlay

机译:国际机场沥青路面覆盖的层间工作条件分​​类和治疗措施

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摘要

The bonding strength between the overlays of an airport asphalt pavement directly affects its service life. In this study, a finite element model of asphalt overlay on airport pavement of Juba Airport in South Sudan was established, and the elastic modulus of overlay, thickness of overlay, running state of aircraft, variation trend of interlayer shear stress under the action of load and temperature were obtained. The AHP-entropy method was used to calculate the combined weight of each influencing factor. The climate in hot and humid areas was further zoned, and a comprehensive classification of airport asphalt pavement overlay between hot and humid tropics was obtained. Four interlayer treatment measures (asphalt precoating, two oils and one aggregate, geotextile, and geogrid) and three interlayer materials (SBS-modified asphalt, ordinary hot asphalt, and SBS-modified emulsified asphalt) were designed and tested. Through shear test, wheel-load fatigue test, and pressurized seepage test, the variation trends of interlayer shear, crack resistance, and waterproofing under different combination schemes were obtained. Finally, the matching relationship between different working conditions and interlayer treatment measures was established. The results show that the actual working conditions of an airport asphalt pavement can be divided into three levels. Combined with the performance ranking of different materials and interlayer treatment measures, the recommended interlayer treatment measures for comprehensive classifications I, II, and III are two oils and one material + SBS-modified asphalt, asphalt precoating, or geogrid + SBS-modified emulsified asphalt or ordinary hot asphalt, and geotextile + ordinary hot asphalt, respectively. The working conditions in Juba Airport in South Sudan can be classified as comprehensive classification II, the recommended treatment measures for geogrid + ordinary hot asphalt.
机译:机场沥青路面覆盖层之间的粘合强度直接影响其使用寿命。在这项研究中,建立了南苏丹朱布机场机场覆盖的有限元模型,以及覆盖的弹性模量,覆盖层,飞机运行状态,载荷作用下的层间剪切应力的变化趋势得到温度。 AHP熵方法用于计算每个影响因子的组合重量。在热和潮湿的地区的气氛进一步分区,获得了在热和潮湿的热带地区之间的机场沥青路面覆盖的全面分类。设计并测试并测试了四种层间处理措施(沥青浸渍,两种油和一个聚集体,土工织物,土工织物和土工织物,普通热沥青和SBS改性乳化沥青)。通过剪切试验,轮式载荷疲劳试验和加压渗流测试,获得了层间剪切,抗裂性和在不同组合方案下的防水的变化趋势。最后,建立了不同工作条件与层间处理措施之间的匹配关系。结果表明,机场沥青路面的实际工作条件可分为三个层次。结合不同材料和层间处理措施的性能等级,综合分类I,II和III的推荐层间处理措施是两种油和一种材料+ SBS改性沥青,沥青浸渍或地质格栅+ SBS改性乳化沥青或普通的热沥青,以及土工织物+普通热沥青。苏班南部朱布机场的工作条件可归类为综合分类II,推荐的土工格栅+普通热沥青的治疗措施。

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  • 来源
    《Journal of Advanced Transportation》 |2019年第5期|9646091.1-9646091.16|共16页
  • 作者单位

    Changan Univ Sch Highway Engn Xian 710064 Peoples R China;

    Changan Univ Sch Highway Engn Xian 710064 Peoples R China;

    Changan Univ Sch Highway Engn Xian 710064 Peoples R China;

    Henan Inst Urban Planning & Design Zhengzhou 450000 Henan Peoples R China;

    CCCC FHDI Engn Co Ltd Guangzhou 510230 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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