首页|期刊导航|实验技术与管理|玄武岩纤维沥青混合料路用性能试验和离散元模拟研究

玄武岩纤维沥青混合料路用性能试验和离散元模拟研究OA

Road performance of basalt fiber-reinforced asphalt mixture by experimental tests and discrete element simulation

中文摘要英文摘要

沥青混合料是道路工程及机场工程常用的路面材料,纤维能够显著提升其路用性能.然而,目前关于纤维沥青混合料的单轴压缩性能及纤维微观增强机理的研究较少.以玄武岩纤维沥青混合料为研究对象,开展不同玄武岩纤维掺量沥青混合料材料试验,研究玄武岩纤维掺量对沥青混合料相对密度、稳定度、流值和抗压强度等物理力学性能的影响规律.基于离散元模拟,研究单轴压缩工况下沥青混合料裂纹产生、发展以及破坏全过程.结果表明,当纤维掺量为 0~0.5%时,随着纤维掺量的增加,沥青混合料毛体积相对密度、沥青饱和度逐渐减小,沥青混合料空隙率、最佳油石比和马歇尔稳定度不断增大,沥青混合料抗压强度先增大后减小.采用该文试验原料时,最优纤维掺量为0.3%,此时沥青混合料稳定度和抗压强度分别较无纤维时提高23.6%和43.3%.添加纤维后,沥青混合料的裂纹数量、裂缝宽度和边缘破碎现象明显减少;纤维掺量大于0.3%时,会出现纤维聚集现象,使集料间接触力链变小,导致纤维沥青混合料抗压强度降低.

[Objective]Asphalt mixture is a widely used pavement material in road and airport engineering.The incorporation of fibers has been demonstrated to substantially enhance the performance of asphalt mixtures in road applications.Nevertheless,research on the uniaxial compressive performance of fiber-reinforced asphalt mixtures and the microscopic enhancement mechanism of fibers remains limited.[Methods]The basalt fiber-reinforced asphalt mixture is selected as the research object.Material tests on basalt fiber-reinforced asphalt mixtures,including the Marshall test and uniaxial compressive tests,are conducted to study the effect of basalt fiber content on the physical and mechanical properties of asphalt mixtures,such as bulk density,stability,flow value,and compressive strength.Based on discrete element simulation,a numerical model for basalt fiber-reinforced asphalt mixture is established,in which the fibers are modeled as clumps,aggregates with diameters larger than 2.36 mm are represented as balls,and the asphalt mortar,composed of aggregates smaller than 2.36 mm and base asphalt,is simulated using a contact model.The discrete element model is verified with the test results,and the contact parameters are calibrated.An investigation is conducted into the process of crack formation,development,and failure of the asphalt mixture under uniaxial compression.[Results]The results show that(1)with an increase in fiber content,there is a gradual decrease in bulk density and voids filled with asphalt,while the void content of the asphalt mixture,optimum asphalt binder content,and mineral aggregate voidage of the asphalt mixture increase.(2)The incorporation of basalt fibers significantly enhances the mechanical properties of asphalt mixtures,including Marshall stability,flow value,and compressive strength.In comparison with asphalt mixtures devoid of fiber,the uniaxial compressive strength increased by 13.2%,43.3%,and 8.3%at fiber content levels of 0.2%,0.3%,and 0.4%by weight,respectively.(3)Fiber content exerts a substantial influence on the axial compressive performance of asphalt mixtures.The maximum compressive strength value is observed at 0.3%fiber content for the asphalt mixtures examined in this study.When the basalt fiber content is below 0.6%,the compressive strength initially increases and then decreases with rising fiber content;however,it remains higher than that of mixtures devoid of fiber.In contrast,when the fiber content exceeds 0.6%,the compressive strength decreases below that of mixtures devoid of fibers.(4)The discrete element model of basalt fiber-reinforced asphalt mixtures accurately simulates the uniaxial compression process.[Conclusions]Microstructural analysis reveals that increasing basalt fiber content significantly reduces edge fragmentation and crack propagation in asphalt mixture specimens,while the number of interparticle contacts increases markedly.Analysis indicates that the discrete element model of asphalt mixtures developed using discrete element modeling software can accurately simulate the internal microscopic mechanisms during uniaxial compression,revealing the influence of basalt fibers on contact evolution and crack propagation within the mixture.The addition of an appropriate amount of basalt fibers enhances the physical and mechanical properties of asphalt mixtures.However,excessive fiber content may lead to fiber aggregation phenomena,resulting in performance degradation.Therefore,for practical engineering applications,the optimal fiber dosage should be determined through experimental testing and theoretical analysis based on specific conditions.The findings of this study have significant reference value for the design of fiber-asphalt mixture pavements and airport runways.

吴堃;Erwin Oh;何万平;熊立威;马杰;陈宇;黄信;李长辉;齐麟;孙博伟

中国民航大学 交通科学与工程学院,天津 300300格里菲斯大学 工程与建筑环境学院,昆士兰 4111中国民航大学 交通科学与工程学院,天津 300300中国民航大学 交通科学与工程学院,天津 300300中石油华东设计院有限公司,山东 青岛 266071中国民航大学 交通科学与工程学院,天津 300300中国民航大学 交通科学与工程学院,天津 300300中国民航大学 交通科学与工程学院,天津 300300中国民航大学 交通科学与工程学院,天津 300300中国民航大学 交通科学与工程学院,天津 300300

交通工程

玄武岩纤维沥青混合料材料试验离散元方法微观机理分析

basalt fiberasphalt mixturematerial testdiscrete element methodmicroscopic mechanism analysis

《实验技术与管理》 2026 (7)

21-30,10

国家自然科学基金(52508521)中国民航大学国家自然科学基金配套项目(3122024PT20)

10.16791/j.cnki.sjg.2026.07.003

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