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Development of an Asphalt Damage Characterization System Using Laser Scanning Detection Technology.

机译:利用激光扫描检测技术开发沥青损伤特征分析系统。

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摘要

Fatigue damage is a major distress in asphalt pavement and has been evaluated using various experimental and analytical approaches over the last two decades. However, a better understanding of fatigue behavior is needed for improved design and repair methods to minimize failures. The first objective of the present research was to develop a new non-contact damage characterization technique to monitor fatigue behavior of asphalt mixes using laser scanning detection system. The second objective of the study was to evaluate the capability of the new technique for measuring the effect of engineered binders modified by a special reaction technique on critical fatigue damage resistance properties. The third and final objective was to investigate mixtures produced with high percentage of Reclaimed Asphalt Pavement (RAP) for damage resistance and compared to the mixes produced with un-modified and modified binders.;The laser scanning technique is a non-contact measuring system that detects changes in surface properties using a parameter called "defect frequency" by scanning a laser beam along the specimen surface. The results of the present laser scanning method were compared to the data obtained from other traditional measuring systems using conventional deflection measuring devices. Analysis of data included the defect frequency and the change in mechanical properties in terms of reduction in initial stiffness, as well as dissipated energy approaches (Ratio of dissipated energy and Energy Ratio).;Fatigue resistance and material response of several mixes were investigated in the present work under various cyclic uniaxial tensile loading conditions by monitoring the intensity of scattered light from the specimen surface. The laser scanning results indicate that this technique is capable of effectively capturing crack initiation and propagation processes. Defect frequency data exhibit excellent agreement with changes in mechanical capacity and dissipated energy properties as damage develops. The number of cycles to failure indicated by laser scanning correlated well with that obtained from traditional and dissipated energy methods. An analysis of the results also reveals superior performance of the modified binders in terms of fatigue resistance, when compared to the base binder. The mixtures produced with the engineered binders and with high RAP content offer better resistance to damage for a wide range of simulated pavement strain amplitudes.
机译:疲劳损伤是沥青路面的主要问题,并且在过去的二十年中已使用各种实验和分析方法进行了评估。但是,需要对疲劳行为有更好的了解,以改进设计和维修方法,以最大程度地减少故障。本研究的第一个目标是开发一种新的非接触损伤表征技术,以使用激光扫描检测系统监测沥青混合料的疲劳行为。该研究的第二个目标是评估新技术测量通过特殊反应技术改性的工程结合料对临界疲劳破坏性能的影响的能力。第三个也是最后一个目标是研究使用高百分比的再生沥青路面(RAP)生产的混合物的抗破坏性,并将其与未改性和改性粘合剂的混合物进行比较。;激光扫描技术是一种非接触式测量系统通过沿着样品表面扫描激光束,使用称为“缺陷频率”的参数检测表面性质的变化。将本激光扫描方法的结果与使用常规偏转测量设备从其他传统测量系统获得的数据进行比较。数据分析包括缺陷频率和机械性能的变化(根据初始刚度的降低)以及耗散能量的方法(耗散能量的比值和能量比)。在混合料中研究了几种混合物的抗疲劳性和材料响应通过监测样品表面散射光的强度,目前的工作是在各种循环单轴拉伸载荷条件下进行的。激光扫描结果表明,该技术能够有效捕获裂纹的萌生和扩展过程。随着损伤的发展,缺陷频率数据与机械容量的变化和耗散的能量特性具有极好的一致性。激光扫描显示的故障循环次数与从传统和耗散能量方法获得的循环次数非常相关。结果的分析还表明,与基础粘合剂相比,改性粘合剂在耐疲劳性方面具有优越的性能。使用工程粘合剂和高RAP含量生产的混合物可在各种模拟路面应变幅度范围内提供更好的抗破坏性。

著录项

  • 作者

    Ajideh, Hossein.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Civil.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 282 p.
  • 总页数 282
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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