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Enhanced model for thermally induced transverse cracking of asphalt pavements

机译:增强模型用于热诱导的沥青路面横变裂缝

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摘要

Thermal cracking is a non-load associated distress mode of asphalt pavements. Finite element models (FEM) were first introduced in this study to determine the thermally induced J-integral at the tip of thermal crack. After extensive runs of the FEM, artificial neural network models were constructed to predict the J-integral, which was used in the Paris' law to calculate the cumulative thermal crack growth over time and thermal cracking fatigue life. Additionally, Long-term pavement performance data was collected to characterize the thermal cracking in different climatic zones. The calculated fatigue life was well correlated with the observed transverse cracking field performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:热裂纹是沥青路面的非负载相关遇险模式。在该研究中首先首先介绍有限元模型(FEM)以确定热裂纹尖端的热诱导的J-积分。经过大量的FEM,构建人工神经网络模型以预测在巴黎法律中使用的J-Integral,以计算累积热裂纹增长随时间和热裂解疲劳寿命。此外,收集了长期路面性能数据,以表征不同气候区的热裂纹。计算出的疲劳寿命与观察到的横变裂缝场性能良好相关。 (c)2019 Elsevier Ltd.保留所有权利。

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