Tu Chongzhi, Luo Rong, Huang Tingting
School of Civil Engineering, Chongqing Jiaotong University, No.66, Xuefu Road, Nan'an District, Chongqing 400074, China.
Center for High-Performance Materials Research and Development, Gansu Province Transportation Planning, Survery & Designing Institute Co., Ltd., 1685 Yanbei Road, Lanzhou 70030, China.
Materials (Basel). 2023 Mar 21;16(6):2504. doi: 10.3390/ma16062504.
Laboratory tests were carried out in accordance with ASTM C664-10(2020) to measure diffusion parameters in an asphalt mixture. These diffusion parameters are effective measures for use in asphalt mixtures. However, the tests could not provide detailed images of the water vapour distribution in the asphalt mixture. To solve this problem, this study provides a method for establishing a numerical model of moisture diffusion in an asphalt mixture, and gives a more detailed picture of the water vapour movement inside the asphalt mixture. Through numerical simulation results obtained under different external conditions, it was demonstrated that water molecules were mainly concentrated in medium III after 100 days of diffusion. After 1000 days of diffusion, the water molecules gradually penetrated the asphalt film in the aggregate particles. Additionally, the water vapour concentrations in the asphalt mixture varied significantly from spot to spot, and various concentration gradients were formed at different locations. These findings revealed that water vapour concentrations in an asphalt mixture vary significantly from spot to spot, forming various concentration gradients at different locations. These findings will be helpful in revealing the mechanism of water damage caused by moisture in asphalt mixtures.
按照ASTM C664 - 10(2020)进行了实验室测试,以测量沥青混合料中的扩散参数。这些扩散参数是用于沥青混合料的有效指标。然而,这些测试无法提供沥青混合料中水蒸气分布的详细图像。为了解决这个问题,本研究提供了一种建立沥青混合料中水分扩散数值模型的方法,并给出了沥青混合料内部水蒸气运动的更详细图像。通过在不同外部条件下获得的数值模拟结果表明,扩散100天后水分子主要集中在介质III中。扩散1000天后,水分子逐渐穿透集料颗粒中的沥青膜。此外,沥青混合料中的水蒸气浓度在不同位置差异显著,并在不同位置形成了各种浓度梯度。这些发现表明,沥青混合料中的水蒸气浓度在不同位置差异显著,在不同位置形成了各种浓度梯度。这些发现将有助于揭示沥青混合料中水分引起的水损害机理。