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Fatigue behavior of conventional and rubberized asphalt mixes.

机译:常规和橡胶沥青混合料的疲劳性能。

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摘要

One of the main distress modes of flexible pavements is the fatigue cracking of the asphalt concrete surface layer. The addition of crumb-rubber modifier (CRM), obtained from scrap tires, to asphalt-aggregate mixtures has shown promise in enhancing their fatigue behavior. In this study, conventional unmodified and CRM modified asphalt-aggregate mixtures are evaluated in terms of their fatigue behavior. Controlled-strain flexural beam fatigue tests are conducted in the laboratory over a wide range of temperatures. Experimental results are compared in terms of flexural, tensile and compressive stiffnesses, phase angle, fatigue life and cumulative dissipated energy. Results showed that CRM mixes are more flexible than unmodified mixes, and that mix fatigue resistance is enhanced by the addition of CRM.; Furthermore, a method of converting controlled-strain test data into equivalent controlled-stress behavior is presented. Experimental results revealed the existence of two types of controlled-strain stiffness-ratio variations. For each type of variation, an equivalent controlled-stress stiffness-ratio variation with cycles is derived. Using the predicted variations, fatigue lives for both modes of loading are determined. Predictions showed that, at a given temperature, controlled-stress mode of loading yields, as expected, shorter fatigue lives than its controlled-strain counterpart. An implicit validation of the proposed conversions revealed that fatigue equation parameters K and n for the different mixes fit within the range of values obtained from the literature for controlled-stress conditions.; In addition, a fatigue life model, applicable to the haversine pattern of loading used in this study, is presented. The model takes into account the cumulative dissipated energy to failure, mode-of-loading, and initial phase angle, strain and stiffness of the mix. Analogy with the traditional strain-based fatigue equation revealed that K is a temperature-dependent parameter, whereas n and m are independent of mix temperature. A decrease in K is associated with an increase in temperature.; The newly developed model is then used to predict fatigue lives of conventional and CRM mixes in typical pavement structures. For this purpose, a finite element-based mechanistic analysis is used. Results revealed the enhanced fatigue resistance of CRM mixes in comparison to unmodified conventional mixes.
机译:柔性路面的主要困扰方式之一是沥青混凝土表层的疲劳开裂。从废旧轮胎中获得的面包屑-橡胶改性剂(CRM)添加到沥青-骨料混合物中已显示出增强其疲劳性能的希望。在这项研究中,常规的未改性和CRM改性的沥青骨料混合物的疲劳性能进行了评估。受控应变弯曲梁疲劳测试在实验室中的宽范围温度下进行。比较了弯曲,拉伸和压缩刚度,相角,疲劳寿命和累积耗散能方面的实验结果。结果表明,CRM混合物比未改性的混合物更具弹性,并且通过添加CRM可以增强混合物的抗疲劳性。此外,提出了一种将控制应变测试数据转换为等效控制应力行为的方法。实验结果表明存在两种类型的受控应变刚度比变化。对于每种类型的变化,都得出等效的随周期变化的受控应力刚度比变化。使用预测的变化,可以确定两种加载模式的疲劳寿命。预测表明,在给定温度下,如预期的那样,加载的受控应力模式会比其受控应变的疲劳寿命短。对所建议的转换的隐式验证表明,不同混合物的疲劳方程参数K和n符合从文献中获得的受控应力条件的值范围。另外,提出了一种疲劳寿命模型,该模型适用于本研究中所使用的正弦波载荷模式。该模型考虑了破坏时的累积耗散能量,负载模式以及混合料的初始相角,应变和刚度。与传统的基于应变的疲劳方程式相似,发现K是温度相关的参数,而n和m与混合温度无关。 K的降低与温度的升高有关。然后,新开发的模型用于预测传统路面和CRM混合料在典型路面结构中的疲劳寿命。为此,使用了基于有限元的机械分析。结果表明,与未改性的常规混合物相比,CRM混合物具有更高的抗疲劳性。

著录项

  • 作者

    Saboundjian, Stephan K.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 322 p.
  • 总页数 322
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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