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基于离散元法的沥青混合料疲劳性能细观仿真研究
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作者单位:

1.江苏交通控股有限公司,江苏 南京 210005;2.江苏高速公路工程养护技术有限公司,江苏 南京 211100;3.河海大学 土木与交通学院,江苏 南京 210024

作者简介:

茅荃,男,硕士,研究员级高级工程师.E-mail:13952038445@139.com

通讯作者:

马辉,男,博士,高级工程师.E-mail:mahui060511113@163.com

中图分类号:

U414

基金项目:

江苏交通控股有限公司科研项目(编号:2021JKY01-2)


Mesoscopic Simulation Study on Fatigue Performance of Asphalt Mixture Based on Discrete Element Method
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Affiliation:

1.Jiangsu Communications Holding Co., Ltd., Nanjing, Jiangsu 210005, China;2.Jiangsu Expressway Engineering Maintenance Technology Co., Ltd., Nanjing, Jiangsu 211100, China;3.College of Civil and Transportation Engineering, Hohai University, Nanjing, Jiangsu 210024, China

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    摘要:

    沥青路面在长期服役过程中容易发生疲劳开裂,从而引发次生病害并降低结构耐久性。为深入研究沥青混合料的疲劳损伤行为,该文基于离散元法构建了半圆弯曲(SCB)细观模型,模拟了SMA-13、SUP-20与SUP-25共3种江苏省高速公路典型沥青混合料在不同应力比条件下的疲劳断裂行为。从疲劳寿命、裂缝扩展及剩余强度等方面分析了沥青混合料疲劳损伤机理与演化规律。结果表明:3种混合料均呈现典型的三阶段疲劳损伤特征,且应力比升高会显著缩短疲劳寿命并加速裂缝发展;SMA-13依托骨架密实性与改性沥青砂浆展现出优异的抗疲劳性能,SUP-20次之,而SUP-25因骨架约束不足及砂浆韧性较低表现最差。同时,不同混合料的裂缝扩展路径与剩余强度衰减规律差异显著,进一步揭示了骨架结构与沥青砂浆性能对疲劳损伤机理的关键作用。

    Abstract:

    Asphalt pavement is prone to fatigue cracking during long-term service, which can lead to secondary diseases and weaken the structural durability. For in-depth revelation of the fatigue damage behavior of asphalt mixtures, in this paper, a semi-circular bending (SCB) mesoscopic model was established based on the discrete element method. The fatigue fracture behavior of three typical asphalt mixtures in Jiangsu Province’s expressways, including SMA-13, SUP-20, and SUP-25, was simulated under different stress ratio conditions. The fatigue damage mechanism and evolution law of asphalt mixtures were analyzed from the aspects of fatigue life, crack propagation, and residual strength. The results show that all three mixtures exhibit typical three-stage fatigue damage characteristics, and the increase of stress ratio will significantly shorten the fatigue life and accelerate the crack development. SMA-13 shows excellent fatigue resistance due to its dense skeleton and modified asphalt mortar, followed by SUP-20, while SUP-25 performs the worst due to insufficient skeleton constraint and low mortar toughness. Meanwhile, the crack propagation paths and residual strength attenuation laws of different mixtures are significantly different, further revealing the key role of skeleton structure and asphalt mortar performance in the fatigue damage mechanism.

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引用本文

茅荃,郑俊秋,马辉,等.基于离散元法的沥青混合料疲劳性能细观仿真研究[J].中外公路,2025,45(5):19-26.
MAO Quan, ZHENG Junqiu, MA Hui, et al. Mesoscopic Simulation Study on Fatigue Performance of Asphalt Mixture Based on Discrete Element Method[J]. Journal of China & Foreign Highway,2025,45(5):19-26.

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  • 收稿日期:2025-09-20
  • 最后修改日期:2025-10-06
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  • 在线发布日期: 2025-10-27
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