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Effect of Air Voids and Asphalt Content on Fatigue Damage Using the Viscoelastic Continuum Damage Analysis

机译:用粘弹性连续体损伤分析法分析气孔和沥青含量对疲劳损伤的影响

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In this study, a laboratory experimental program was conducted to investigate the effect of asphalt content and air voids on the material properties and fatigue performance characteristics for asphalt concrete mixtures. Two levels of asphalt content (4.2 and 5.2%) and air voids (4.5 and 9.5%) were considered to produce four asphalt concrete mixtures combination. The advanced material characterization tests included: dynamic (complex) modulus for stiffness evaluation and the uniaxial tension-compression for fatigue assessment. The fatigue analysis was performed for each mixture using the simplified viscoelastic continuum damage (S-VECD) approach. The damage characteristic (C-S) curves were established for each of the four mixtures. In order to have more useful information about the fatigue resistance of the four mixtures, the C-S curves were used to obtain the fatigue relationships by performing simulated predictions of the fatigue life at specific conditions. It is found that the S-VECD simulations are able to reflect the observed material trends. Simulations performed with this model also suggest that the impact of air void and asphalt content changes differ between stress controlled and strain controlled loading. The quantification of these differences may have implications in both pavement and material analysis and design.
机译:在这项研究中,进行了一项实验室实验程序,以研究沥青含量和气孔对沥青混凝土混合物的材料性能和疲劳性能特征的影响。两种水平的沥青含量(4.2%和5.2%)和气孔(4.5%和9.5%)被认为可以生产出四种沥青混凝土混合物。先进的材料表征测试包括:用于刚度评估的动态(复数)模量和用于疲劳评估的单轴拉伸压缩。使用简化的粘弹性连续体损伤(S-VECD)方法对每种混合物进行了疲劳分析。建立了四种混合物中每一种的损伤特性(C-S)曲线。为了获得有关这四种混合物的抗疲劳性的更多有用信息,使用C-S曲线通过对特定条件下的疲劳寿命进行模拟预测来获得疲劳关系。发现S-VECD模拟能够反映观察到的材料趋势。用该模型进行的仿真还表明,在压力控制和应变控制的载荷下,空隙和沥青含量变化的影响是不同的。这些差异的量化可能对铺装以及材料分析和设计产生影响。

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