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首页> 外文期刊>Journal of materials in civil engineering >Investigation on Fracture Performance of Lightweight Epoxy Asphalt Concrete Based on Microstructure Characteristics
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Investigation on Fracture Performance of Lightweight Epoxy Asphalt Concrete Based on Microstructure Characteristics

机译:基于微观结构特征的轻质环氧沥青混凝土断裂性能研究

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摘要

In order to investigate the fracture performance of lightweight epoxy asphalt concrete (LEAC) used in steel bridge deck pavement, experiments and numerical simulations were used to analyze the effect of lightweight aggregate (LWA) on fracture behavior of LEAC. The gradations of LEAC with different LWA contents were determined by the Marshall method, indirect tensile test with and without freeze-thaw processing were used to measure the indirect tensile strength and moisture stability of LEAC, and fracture properties were evaluated by three-point bending beam test at 15℃ and .1-0℃. Also, internal structures of LEAC were scanned by X-ray CT device to develop three-dimensional finite element models (3D-FEM), and mechanical states of basalt aggregate, LWA, and epoxy asphalt mastic (EAM) were also studied. The results show that the LWA has an obvious influence on fracture properties of LEAC; LWA content 5% can significantly improve the fracture performance. EAM is the main bearing structure of LEAC; minimizing the impact on EAM can enhance the structural strength of LEAC. The mechanical state of internal structure can be calculated by 3D-FEM effectively, and the simulation results illustrate that the effect of LWA on stress distribution of EAM is obvious.
机译:为了研究轻质环氧沥青混凝土(LEAC)在钢桥面铺装中的断裂性能,通过实验和数值模拟分析了轻质骨料(LWA)对LEAC断裂行为的影响。采用马歇尔法测定不同LWA含量的LEAC的等级,采用有无冻融处理的间接拉伸试验测量LEAC的间接拉伸强度和水分稳定性,并通过三点弯曲梁评估其断裂性能。在15℃和.1-0℃下进行测试。此外,通过X射线CT设备对LEAC的内部结构进行扫描,以建立三维有限元模型(3D-FEM),并对玄武岩骨料,LWA和环氧沥青胶泥(EAM)的力学状态进行了研究。结果表明,LWA对LEAC的断裂性能有明显的影响。 LWA含量5%可以显着改善断裂性能。 EAM是LEAC的主要轴承结构。最小化对EAM的影响可以增强LEAC的结构强度。通过3D-FEM可以有效地计算出内部结构的力学状态,仿真结果表明,LWA对EAM应力分布的影响是明显的。

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