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Experimental Evaluation of the Interaction between Geosynthetic Reinforcements and Hot Mix Asphalt

机译:土工增强材料与热拌沥青相互作用的实验评估

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The advent of interlayer reinforcements with a wide range of stiffness properties has provided the opportunity to produce a specially-designed composite material that can enhance pavement performance in various aspects (e.g., rutting, fatigue cracking, reflective cracking). However, reinforcements may negatively affect the bonding between asphalt layers. The objective of this paper is to evaluate experimentally the interlayer de-bonding effect. In particular, reinforced and unreinforced asphalt specimens were tested in a direct shear test setup and their interlayer bond strength was characterized. The reinforcement inclusions used in the testing program involved synthetic materials made from various polymers, including polyester, polyvinyl alcohol, and glass fiber. Results of the experimental program indicated that the de-bonding effect impacts not only the maximum bond strength, but also the stiffness and the average interlayer shear strain at the maximum bond strength. Moreover, coverage ratio and the thickness of the reinforcement yarns were identified as additional important parameters in characterization of the interlayer de-bonding effect.
机译:具有广泛的刚度特性的层间增强材料的出现提供了生产特殊设计的复合材料的机会,该复合材料可以在各个方面(例如车辙,疲劳裂纹,反射裂纹)增强路面性能。但是,增强剂可能会对沥青层之间的粘结产生负面影响。本文的目的是通过实验评估层间脱胶效果。特别是,在直接剪切试验装置中对增强和未增强的沥青样品进行了测试,并表征了其层间粘结强度。测试程序中使用的增强夹杂物包括由各种聚合物制成的合成材料,包括聚酯,聚乙烯醇和玻璃纤维。实验程序的结果表明,脱粘效果不仅影响最大粘结强度,而且还影响最大粘结强度下的刚度和平均层间剪切应变。此外,在表征层间脱粘效果时,还确定了增强比的覆盖率和粗纱厚度是其他重要参数。

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