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Development of a Composite Specimen Interface Cracking (CSIC) Test for Top-Down Cracking

机译:自上而下的裂纹的复合试样界面裂纹(CSIC)测试的开发

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摘要

Pavement top-down cracking performance not only depends on pavement layer material characteristics, but also on layer interface conditions. Interface conditions involve both the shear resistance along the interface and the cracking resistance across the interface provided by the interface bonding agents. Regarding hot-mix asphalt (HMA), currently available tests are mainly focused on pavement layer material properties. When thick polymer modified asphalt emulsion (PMAE) was applied at the interface between an open-graded friction course (OGFC) and a dense graded structural layer, a bonded interface was formed by the migration of PMAE up into the OGFC air voids. Shear strength tests, which can well characterize the adhesive film effect of interface bonding agents, cannot fully capture the effect of bonded interface on pavement cracking performance. To simulate the crack initiation and propagation process and evaluate the effect of bonded interface conditions on top-down cracking performance, a composite specimen interface cracking (CSIC) test was developed. The developed system involves repeated tensile loading and monitoring of the rate of damage development (reduction in stiffness) on composite specimens specifically designed for this purpose. Number of loading cycles to failure and damage rate results from the proposed test on three different interface conditions clearly indicate that this test method can be used to optimize bonding agents and application rates for enhanced cracking performance. This method may also provide a suitable specification test for evaluation of interface conditions on reflective cracking performance.
机译:路面自上而下的开裂性能不仅取决于路面层材料的特性,还取决于路面的界面条件。界面条件既包括沿界面的剪切阻力,也包括由界面粘合剂提供的跨界面的抗裂性。关于热混合沥青(HMA),当前可用的测试主要集中在路面层材料的性能上。将厚聚合物改性沥青乳液(PMAE)应用于开放级摩擦层(OGFC)与致密渐变结构层之间的界面时,通过PMAE向上迁移到OGFC气隙中形成了粘合界面。剪切强度测试可以很好地表征界面粘合剂的粘合膜效果,但不能完全捕捉粘合界面对路面开裂性能的影响。为了模拟裂纹的萌生和扩展过程,并评估粘结界面条件对自上而下的裂纹性能的影响,开发了一种复合材料样品界面裂纹(CSIC)测试。开发的系统涉及反复拉伸负载,并监测专门为此目的设计的复合材料试样的损伤发展速度(降低刚度)。提议的测试在三种不同的界面条件下得出的破坏和损坏率的加载循环数清楚地表明,该测试方法可用于优化粘合剂和涂布率,以提高裂化性能。该方法还可以提供合适的规格测试,以评估界面条件对反射裂缝性能的影响。

著录项

  • 来源
    《Journal of testing and evaluation》 |2013年第4期|625-634|共10页
  • 作者单位

    Highway School, Chang'An University, China;

    Dept. of Civil and Environmental Engineering and Architecture, University of Parma, Strada Dell'Universita, 12, 43100 Parma, Italy;

    Dept. of Civil Engineering, University of Florida, 2500 Southwest 2nd Avenue, Gainesville, FL 32607, United States of America;

    Dept. of Civil Engineering, University of Florida, 2500 Southwest 2nd Avenue, Gainesville, FL 32607, United States of America;

  • 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

    interface; composite specimenv; asphalt pavement; top-down cracking; fracture;

    机译:接口;复合试样沥青路面自上而下的裂纹;断裂;

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