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Laboratory evaluation of interfacial mechanical properties in geogrid-reinforced bituminous layers

机译:地理钢筋沥青层界面力学性能的实验室评价

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摘要

In this study, the mechanical properties of composite bituminous structures with geogrid products, used as an interlayer between different types of bituminous mixtures, at a constant temperature, were examined. A twofold experimental program based on new approaches was selected. A new configuration of the 3-Point Bending Test (3-PBT) was adopted to capture the J-integral and crack resistance property defined by crack resistance index (CRI) at the interface against bottom-up crack propagation. The bonding quality at the interface was also defined through a new index named coefficient of interface bonding (CIB), which was measured via a modified version of the slant shear device. The results derived from this research revealed that reinforcement of the interface, with varying degree of surface texture, by geogrid products significantly enhances the fracture toughness of the whole system in terms of the J-integral, which could be properly connected to the combined functions of bonding quality and crack resistance indices defined at the interface.
机译:在该研究中,研究了具有地质格栅产品的复合烟草结构的机械性能,用作不同类型的沥青混合物之间的中间层,在恒定温度下被检查。选择基于新方法的双重实验计划。采用新的3点弯曲试验(3-PBT)的新配置来捕获通过界面抗裂纹指数(CRI)定义的J-积分和抗裂性能,以抵抗自下而上的裂纹传播。界面处的键合质量也通过界面粘合(CIB)的新索引,其通过倾斜剪切装置的改进版本测量。源自该研究的结果揭示了通过地质格栅产品的改变程度的表面纹理的界面的加固显着提高了整个系统的骨折韧性,而是可以正确地连接到组合功能接口定义的粘接质量和抗裂性指数。

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