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Energy-Based Approach to Predict Thermal Fatigue Life of Asphalt Mixes Using Modified Uniaxial Test Setup

机译:使用改进的单轴测试装置基于能量的方法预测沥青混合料的热疲劳寿命

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In this paper an energy-based approach has been proposed based on the principals of nonlinear viscoelastic fracture mechanics to determine the thermal fatigue life of asphalt mixes for the short-term aging condition at a constant temperature. The approach, presented in this paper for only one aging condition at one temperature, is considered in another paper as the basis for the development of a comprehensive model (TFCMODEL) by which the thermal fatigue life of various asphalt mixes may be predicted analytically for varying aging conditions and temperatures. To this end, a modified uniaxial test setup was designed to account for the effects of the bonding/friction condition between asphalt and base layers, and nonuniform distribution of stresses/strains within the asphalt layer depth. To characterize the thermal fatigue behavior of asphalt mixes, uniaxial thermal fatigue tests were carried out on the beam specimens at two aggregate gradations, two binder contents, two air void contents, one aging condition, one temperature, two bonding/friction conditions between the asphalt and base layers, and four cyclic loading patterns in both tension and compression, with three replicates. After determining the crack growth rate for the successive cycles, some empirical models were formed to predict the crack length and the maximum measured tensile/compressive loads as functions of the cycle number. Rate of dissipated pseudostrain energy, pseudo J-Integral, and the fracture parameters (A and n) were then calculated for all the experimental combinations, and two empirical models were developed to predict the fracture parameters based on the viscoelastic properties of asphalt mixes. Finally, the thermal fatigue lives of asphalt mixes were obtained based on the change in the ratio of cumulative dissipated pseudostrain energy as the criterion identifying the thermal fatigue crack initiation and propagation.
机译:本文基于非线性粘弹性断裂力学的原理,提出了一种基于能量的方法来确定沥青混合料在恒定温度下的短期老化条件下的热疲劳寿命。本文提出的方法仅针对一种温度下的一种老化条件,在另一篇论文中被认为是开发综合模型(TFCMODEL)的基础,该模型可通过分析预测各种沥青混合料的热疲劳寿命,以进行变化。老化条件和温度。为此,设计了一种改进的单轴测试装置,以考虑沥青和基础层之间的粘结/摩擦条件以及沥青层深度内应力/应变的不均匀分布的影响。为了表征沥青混合料的热疲劳行为,对梁试样进行了两种骨料级分,两种粘结剂含量,两种气隙含量,一种时效条件,一种温度,两种粘结/摩擦条件下的单轴热疲劳试验。底层和基础层,以及在拉伸和压缩状态下的四个循环加载模式,重复三个。在确定了连续循环的裂纹扩展速率之后,形成了一些经验模型来预测裂纹长度和最大测得的拉伸/压缩载荷与循环次数的关系。然后计算所有实验组合的拟应变能耗散率,拟J积分和断裂参数(A和n),并基于沥青混合料的粘弹性特性开发了两个经验模型来预测断裂参数。最后,以累积耗散拟应变能比的变化为基础,获得沥青混合料的热疲劳寿命,以此作为确定热疲劳裂纹萌生和扩展的标准。

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