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Innovative Approach to Characterizing Damage Evolution in Asphalt Concrete during Fatigue Tests

机译:表征疲劳试验中沥青混凝土损伤演化的创新方法

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摘要

Fatigue cracking, either top-down or bottom-up, is one of the major distresses in asphalt pavements. One of the significant challenges in predicting the fatigue cracking behavior of asphalt concrete is that such behavior, unlike that of elastic materials, depends on external conditions, such as temperature and loading rate within the nondamage or damage domain. The application of the viscoelastic continuum damage (VECD) approach or its further development, the viscoelastoplastic continuum damage (VEPCD) approach, requires extensive material testing of the viscoelastic properties (i.e., creep compliance or relaxation), uniaxial or multiscale fatigue tests, and computations, which may hinder the implementation of this fundamental approach for the characterization of fatigue for asphalt concrete. This study develops a new approach, based on a derivative of Poisson's ratio, to characterize the integrity and material damage of asphalt concrete. Fatigue tests are conducted for two mixes at different load levels and temperatures. It is found that a unique relationship exists between the dynamic modulus and strain ratio. Mastercurves are constructed to determine the damage evolution in asphalt concrete during fatigue tests, which provides the basis for developing constitutive models to predict the fatigue life of asphalt pavement.
机译:自上而下或自下而上的疲劳裂纹是沥青路面的主要困扰之一。预测沥青混凝土疲劳开裂行为的重大挑战之一是,与弹性材料不同,这种行为取决于外部条件,例如温度和无损或破坏范围内的加载速率。粘弹性连续介质损伤(VECD)方法的应用或进一步发展,粘弹塑性连续介质损伤(VEPCD)方法,需要对粘弹性的材料进行广泛的材料测试(即蠕变柔度或松弛),单轴或多尺度疲劳测试以及计算,这可能会阻碍这种用于表征沥青混凝土疲劳的基本方法的实施。这项研究基于泊松比的导数,开发了一种新方法来表征沥青混凝土的完整性和材料损伤。对两种混合物在不同的负载水平和温度下进行疲劳测试。发现动态模量和应变比之间存在独特的关系。构建主曲线来确定疲劳测试过程中沥青混凝土的损伤演化,这为开发本构模型预测沥青路面的疲劳寿命提供了基础。

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