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Development of indirect ring tension test for fracture characterization of asphalt mixtures.

机译:开发用于沥青混合料断裂特性的间接环张力测试。

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摘要

Low temperature cracking is a major distress in asphalt pavements. Several test configurations have been introduced to characterize the fracture properties of hot mix (HMA); however, most are considered to be research tools due to the complexity of the test methods or equipment. This dissertation describes the development of the indirect ring tension (IRT) fracture test for HMA, which was designed to be an effective and user-friendly test that could be deployed at the Department of Transportation level. The primary advantages of this innovative and yet practical test include: relatively large fracture surface test zone, simplicity of the specimen geometry, widespread availability of the required test equipment, and ability to test laboratory compacted specimens as well as field cores.;Numerical modeling was utilized to calibrate the stress intensity factor formula of the IRT fracture test for various specimen dimensions. The results of this extensive analysis were encapsulated in a single equation. To develop the test procedure, a laboratory study was conducted to determine the optimal test parameters for HMA material. An experimental plan was then developed to evaluate the capability of the test in capturing the variations in the mix properties, asphalt pavement density, asphalt material aging, and test temperature.;Five plant-produced HMA mixtures were used in this extensive study, and the results revealed that the IRT fracture test is highly repeatable, and capable of capturing the variations in the fracture properties of HMA. Furthermore, an analytical model was developed based on the viscoelastic properties of HMA to estimate the maximum allowable crack size for the pavements in the experimental study. This analysis indicated that the low-temperature cracking potential of the asphalt mixtures is highly sensitive to the fracture toughness and brittleness of the HMA material. Additionally, the IRT fracture test data seemed to correlate well with the data from the distress survey which was conducted on the pavements after five years of service. The maximum allowable crack size analysis revealed that a significant improvement could be realized in terms of the pavements performance if the HMA were to be compacted to a higher density. Finally, the IRT fracture test data were compared to the results of the disk-shaped compact [DC(t)] test. The results of the two tests showed a strong correlation; however, the IRT test seemed to be more repeatable.;KEYWORDS: Asphalt Pavement, Low-Temperature Cracking, Fracture Mechanics, Material Characterization, Laboratory Testing.
机译:低温开裂是沥青路面的主要困扰。引入了几种测试配置来表征热混合料的断裂特性;然而,由于测试方法或设备的复杂性,大多数被认为是研究工具。本文介绍了用于HMA的间接环张力(IRT)断裂试验的发展,该试验被设计为一种有效且用户友好的试验,可以在交通运输部一级进行部署。这种创新而又实用的测试的主要优点包括:相对较大的断裂表面测试区,样品几何形状的简单性,所需测试设备的广泛可用性以及测试实验室压实样品以及现场岩心的能力。用于校准各种样品尺寸的IRT断裂试验的应力强度因子公式。广泛分析的结果封装在一个方程式中。为了制定测试程序,进行了一项实验室研究,以确定HMA材料的最佳测试参数。然后制定了一项实验计划,以评估该测试捕获混合料性能,沥青路面密度,沥青材料老化和测试温度变化的能力。;这项广泛的研究使用了五种植物生产的HMA混合物,并且结果表明,IRT断裂测试具有很高的可重复性,并且能够捕获HMA断裂特性的变化。此外,基于HMA的粘弹性特性开发了一个分析模型,以估算实验研究中路面的最大允许裂缝尺寸。该分析表明,沥青混合物的低温开裂可能性对HMA材料的断裂韧性和脆性高度敏感。此外,IRT断裂测试数据似乎与在服务五年后在人行道上进行的遇险调查数据非常相关。最大允许裂缝尺寸分析表明,如果将HMA压实到更高的密度,则可以在人行道性能方面实现显着改善。最后,将IRT断裂测试数据与盘状紧凑型[DC(t)]测试结果进行了比较。两项测试的结果显示出很强的相关性。关键词:沥青路面,低温开裂,断裂力学,材料表征,实验室测试。

著录项

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Civil engineering.;Materials science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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