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Dry and Soaked Laboratory Tests for Foamed Asphalt Mixes

机译:泡沫沥青混合料的干式和湿式实验室测试

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摘要

This paper discusses the test conditions (dry or soaked) of foamed asphalt mixes used to optimize mix design variables. It attempts to answer the following two questions: First, under which conditions should foamed asphalt material properties be tested in the laboratory to determine field performance? Second, under which laboratory conditions can the effectiveness of foamed asphalt stabilization be most easily distinguished? Four foamed asphalt full-depth reclamation projects showing distress were reviewed. It was found that the behavior of foamed asphalt treated base layers when soaked is critical to pavement performance. Laboratory testing indicated that under dry conditions, weak chemical cementation and suction from residual water in the mineral filler phase can dominate the material behavior, and obscure the effects of the foamed asphalt. On the other hand, under soaked conditions the efficacy of foamed asphalt treatment can be readily distinguished. Laboratory strength testing results involving a broad range of factors including recycled asphalt pavement (RAP) sources, RAP gradations, asphalt types, asphalt contents, test methods, etc. were used to validate the above analysis. In terms of resilient modulus, foamed asphalt transforms the material behavior from that of typical unbound granular materials to that of asphalt-bound materials. The effects of foamed asphalt on material stiffnesses are evident for soaked specimens, but complex and practically difficult to measure and distinguish in project level mix design procedures. Using resilient modulus tests to optimize mix design is not recommended. Solely using soaked tensile strengths as the objective function to optimize mix design variables is proposed based on the aforementioned findings.
机译:本文讨论了用于优化混合料设计变量的泡沫沥青混合料的测试条件(干燥或浸泡)。它试图回答以下两个问题:首先,应在实验室的哪些条件下对泡沫沥青材料的性能进行测试以确定现场性能?第二,在哪个实验室条件下,最容易区分泡沫沥青稳定效果?审查了显示遇险的四个泡沫沥青全深度填海项目。已经发现,泡沫沥青处理的基层在浸泡时的性能对路面性能至关重要。实验室测试表明,在干燥条件下,弱的化学胶结作用和矿物填料相中残留水的抽吸作用可能会主导材料性能,并掩盖泡沫沥青的影响。另一方面,在浸泡条件下,可以容易地区分泡沫沥青处理的功效。实验室强度测试结果涉及多种因素,包括再生沥青路面(RAP)来源,RAP等级,沥青类型,沥青含量,测试方法等,以验证上述分析。在弹性模量方面,泡沫沥青将材料性能从典型的未结合的粒状材料转变为沥青结合的材料。泡沫沥青对材料刚度的影响对于浸泡的标本是显而易见的,但是在项目级混合设计程序中很难测量和区分,并且实际上是困难的。不建议使用弹性模量测试来优化混合物设计。基于上述发现,建议仅使用浸泡的拉伸强度作为目标函数来优化混合料设计变量。

著录项

  • 来源
    《Asphalt paving technology》 |2008年第2008期|71-106|共46页
  • 作者单位

    University of California Pavement Research Center, Department of Civil and Environmental Engineering, University of California, Davis;

    University of California Pavement Research Center, Department of Civil and Environmental Engineering, University of California, Davis;

    University of California Pavement Research Center, Department of Civil and Environmental Engineering, University of California, Davis;

    University of California Pavement Research Center, Institute of Transportation Studies, University of California, Berkeley;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    foamed asphalt; full depth reclamation; FDR; recycled asphalt pavement; mix design; moisture sensitivity;

    机译:泡沫沥青全深度填海;FDR;再生沥青路面;混合设计;水分敏感性;

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