首页> 外文期刊>Journal of materials in civil engineering >Development of a Pressurized Blister Test for Interface Characterization of Aggregate Highly Polymerized Bituminous Materials
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Development of a Pressurized Blister Test for Interface Characterization of Aggregate Highly Polymerized Bituminous Materials

机译:开发一种用于整体骨料沥青材料界面表征的加压泡罩试验

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摘要

Bituminous crack sealants are commonly used for pavement maintenance. While cracks in pavement are inevitable, sealing the cracks helps maintain the integrity of the pavement by preventing water and debris from entering the structure. Sealing cracks increases pavement service life up to 5 years, and this can lead to significant cost savings for the U.S. highway system. Crack sealing is a cost-effective maintenance approach, provided that the right sealant is selected and properly installed. However, sealant selection is difficult because of the lack of a rheology-based standard test that correlates with field performance. To address this drawback, performance-based guidelines for the selection of hot-poured crack sealants have been developed by a research team, including the writers. To complement these guidelines, this paper describes a recently developed adhesion test procedure that predicts interface bonding based on a fundamental property of the interface, interfacial fracture energy (IFE). This recently developed pressurized blister test is a fracture test. The principle of the test is to break the interface bonding by pressurizing the interface between the adhesive and adherend. The amount of pressure and the deformation of the adhesive before and during the debonding period are used to calculate the IFE. The test variation is acceptable because its average coefficient of variation is 8.7%. This paper describes the test apparatus and procedure and discusses the adhesion of several hot-poured bituminous sealants to aluminum, limestone, quartzite, and granite.
机译:沥青裂缝密封胶通常用于路面维护。虽然不可避免会出现人行道裂缝,但密封裂缝可以防止水和碎屑进入结构,从而有助于保持人行道的完整性。密封裂缝可将路面使用寿命延长至5年,这可以为美国的高速公路系统节省大量成本。裂缝密封是一种经济有效的维护方法,只要选择正确的密封剂并正确安装即可。但是,由于缺乏与现场性能相关的基于流变学的标准测试,因此很难选择密封胶。为了解决这个缺点,研究团队(包括作者)已经制定了基于性能的热浇注裂缝密封胶选择指南。为了补充这些指导原则,本文介绍了最近开发的附着力测试程序,该程序根据界面的基本属性界面断裂能(IFE)预测界面结合。最近开发的加压水泡试验是断裂试验。测试的原理是通过加压粘合剂和被粘物之间的界面来破坏界面粘合。在脱粘之前和期间的压力和粘合剂的变形量用于计算IFE。测试变异是可以接受的,因为其平均变异系数为8.7%。本文介绍了测试设备和程序,并讨论了几种热浇注的沥青密封剂对铝,石灰石,石英岩和花岗岩的附着力。

著录项

  • 来源
    《Journal of materials in civil engineering》 |2011年第5期|p.656-663|共8页
  • 作者

    Elham H. Fini; Imad L Al-Qadi;

  • 作者单位

    Dept. of Civil Engineering, North Carolina A&T State Univ., 447 McNair Hall, 1601 E. Market St., Greensboro, NC 27411;

    Founder Professor of Engineering and Director of Illinois Center for Transportation, Dept. of Civil and Environmental Engineering, Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave., MC-250, Urbana, IL 61801;

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

    crack sealant; adhesion; bond; curing; interfacial fracture energy.;

    机译:裂纹密封胶;附着力键;养护;界面断裂能。;

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