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Developing an Indicator for Fatigue Cracking in Hot Mix Asphalt Pavements Using Viscoelastic Continuum Damage Principles

机译:使用粘弹性连续体损伤原理开发热混合沥青路面中疲劳裂缝的指标

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Fatigue cracking in asphalt pavements results in decreased ride quality, decreased fuel economy, and provides an avenue for intrusion of water. Design of the mixture is predominantly focused on volumetrically balancing the amount of air, asphalt, and aggregate in the system. Such an approach only implicitly considers performance and so the natural progression is to design through direct material property assessment and correlations to field performance. The objectives of this paper are to relate mixture stiffness, fatigue, and pavement system characteristics together for use in performance-based mixture design; identify a Simplified-Viscoelastic Continuum Damage model output parameter which produces the most separation between poorly and satisfactorily performing structures when combined with dynamic modulus and phase angle information; and evaluate the impact of reclaimed asphalt pavement on the performance of the indicator. Results show a relationship between fatigue life of the pavement system and an energy-based index. This approach holds promise because of its reliance on material attributes that can be derived on one testing machine. The constitutive model parameters can be found from the direct tension cyclic fatigue test and can be incorporated into prediction software, further enhancing the appeal of a performance specification.
机译:沥青路面中的疲劳开裂导致乘坐质量下降,降低燃料经济性,并为水的侵入提供了途径。混合物的设计主要集中在体内平衡系统中的空气,沥青和骨料量。这样的方法仅隐含地考虑性能,因此自然进展是通过直接材料性能评估和与现场性能的相关性设计。本文的目的是将混合刚度,疲劳和路面系统特征联合在一起,用于基于性能的混合物设计;识别简化粘弹性连续体损伤模型输出参数,在与动态模量和相位角信息组合时,在与动态模量和相位角信息结合时产生的最差和令人满意的结构之间的最大分离;并评估再生沥青路面对指标性能的影响。结果表明了路面系统疲劳寿命与基于能量的指标之间的关系。这种方法由于其依赖于可以在一个测试机器上导出的材料属性而依赖。本构模型参数可以从直接张力循环疲劳试验中找到,并可纳入预测软件,进一步增强了性能规范的吸引力。

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