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Thermal behavior of crumb-rubber modified asphalt concrete mixtures.

机译:碎橡胶改性沥青混凝土混合物的热性能。

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摘要

Thermal cracking is one of the primary forms of distress in asphalt concrete pavements, resulting from either a single drop in temperature to an extreme low or from multiple temperature cycles above the fracture temperature of the asphalt-aggregate mixture. The first mode described is low temperature cracking; the second is thermal fatigue. The addition of crumb-rubber, manufactured from scrap tires, to the binder in asphalt concrete pavements has been suggested to minimize both types of thermal cracking.; Four experiments were designed and completed to evaluate the thermal behavior of crumb-rubber modified (CRM) asphalt-aggregate mixtures. Modified and unmodified mixture response to thermal stresses was measured in four laboratory tests. The Thermal Stress Restrained Specimen Test (TSRST) and the Indirect Tensile Test (IDT) were used to compare mixture resistance to low temperature cracking. Modified mixtures showed improved performance, and cooling rate did not affect mixture resistance according to the statistical analysis. Therefore results from tests with faster rates can predict performance under slower field rates. In comparison, predicted fracture temperatures and stresses (IDT) were generally higher than measured values (TSRST). In addition, predicted fracture temperatures from binder test results demonstrated that binder testing alone is not sufficient to evaluate CRM mixtures.; Thermal fatigue was explored in the third experiment using conventional load-induced fatigue tests with conditions selected to simulate daily temperature fluctuations. Test results indicated that thermal fatigue may contribute to transverse cracking in asphalt pavements. Both unmodified and modified mixtures had a finite capacity to withstand daily temperature fluctuations coupled with cold temperatures. Modified mixtures again exhibited improved performance. The fourth experiment examined fracture properties of modified and unmodified mixtures using a common fracture toughness test. Results showed no effect from modification, but the small experiment size may have masked this effect.; Reliability concepts were introduced to include risk and uncertainty in a comparison of mixture response measured in the laboratory and estimated environmental conditions. This comparison provided evidence that CRM mixtures exhibit improved resistance to both types of thermal cracking at high levels of reliability. In conclusion, a mix design and analysis framework for evaluating thermal behavior was recommended.
机译:热裂纹是沥青混凝土路面遇险的主要形式之一,其原因是温度单次下降至极低,或者是由于温度高于沥青-骨料混合物的断裂温度而经历的多个温度循环。所描述的第一种模式是低温裂化。第二是热疲劳。已建议在沥青混凝土路面中的粘结剂中添加由废轮胎制成的碎橡胶,以最大程度地减少这两种类型的热裂纹。设计并完成了四个实验,以评估碎石-橡胶改性(CRM)沥青-骨料混合物的热性能。在四个实验室测试中测量了改性和未改性混合物对热应力的响应。使用热应力约束试样测试(TSRST)和间接拉伸测试(IDT)来比较耐混合性和低温开裂性。根据统计分析,改性混合物表现出改善的性能,并且冷却速率不影响混合物的耐性。因此,具有较高速率的测试结果可以预测较低速率下的性能。相比之下,预测的断裂温度和应力(IDT)通常高于实测值(TSRST)。此外,根据粘合剂测试结果预测的断裂温度表明,仅粘合剂测试不足以评估CRM混合物。在第三个实验中,使用常规的载荷诱导疲劳测试对热疲劳进行了研究,并选择了模拟每日温度波动的条件。测试结果表明,热疲劳可能会导致沥青路面的横向开裂。未改性的混合物和改性的混合物都具有承受每日温度波动和低温的有限能力。改性混合物再次表现出改进的性能。第四个实验使用普通的断裂韧性测试检查了改性和未改性混合物的断裂性能。结果表明修改没有效果,但是较小的实验规模可能掩盖了该效果。引入了可靠性概念,以比较实验室中测得的混合物响应和估计的环境条件中的风险和不确定性。这项比较提供了证据,表明CRM混合物在高可靠性下对两种类型的热裂纹均表现出更高的抵抗力。总之,建议使用用于评估热性能的混合设计和分析框架。

著录项

  • 作者

    Epps, Amy Louise.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Civil.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 391 p.
  • 总页数 391
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;
  • 关键词

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