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Study of the Self-Healing Performance of Semi-Flexible Pavement Materials Grouted with Engineered Cementitious Composites Mortar based on a Non-Standard Test

机译:基于非标准试验的工程胶凝复合砂浆灌浆半柔性路面材料的自愈性能研究

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摘要

Semi-flexible pavement (SFP) materials, with their characteristics of good high temperature stability, strong durability, and lower cost, are suitable for heavy-duty roads, but their cracking problem has hindered the development and popularization of this kind of pavement to a certain extent. In this study, engineered cementitious composites (ECC) were used to form ECC-SFP materials. The self-healing properties of ECC-SFP materials with three kinds of voids of matrix asphalt mixtures were studied. The test results showed that the fluidity and strength of the ECC mortars met the specification requirements when the water–cement ratio was 0.23 and the ECC fiber dosage was 1–2%. The flexural strength of ECC mortar is better than that of ordinary mortar. The higher the ECC fiber dosage, the higher the flexural strength. Increasing the void of the matrix asphalt mixture and the amount of ECC mortar increased the toughness of the ECC-SFP material, which was seen as an increase of the flow value. Curing conditions are key factor affecting the self-healing properties of ECC mortar and ECC-SFP materials. The self-healing effect of materials in 60 °C water is the best. When an ECC fiber dosage of 1% was used, the of ECC mortar and of ECC-SFP material were 27.5% and 24.8%, respectively. With the addition of ECC material, ECC-SFP material achieved a certain degree of self-healing, but this still needs to be further optimized. Studies of grouting process optimization and increasing the ECC fiber dosage are feasible directions to explore in order to improve the self-healing properties of ECC-SFP materials in the future.
机译:半柔性路面(SFP)材料具有良好的高温稳定性,较强的耐久性和较低的成本,适用于重型道路,但其开裂问题阻碍了这种路面的发展和普及。在一定程度上。在这项研究中,工程胶结复合材料(ECC)用于形成ECC-SFP材料。研究了三种基质沥青混合料空隙对ECC-SFP材料的自愈性能。测试结果表明,当水灰比为0.23,ECC纤维用量为1-2%时,ECC砂浆的流动性和强度均符合规格要求。 ECC砂浆的抗弯强度比普通砂浆好。 ECC纤维用量越高,弯曲强度越高。增加基质沥青混合物的空隙和ECC砂浆的量会增加ECC-SFP材料的韧性,这被视为流量值的增加。固化条件是影响ECC砂浆和ECC-SFP材料自愈性能的关键因素。材料在60°C的水中的自愈效果最佳。当使用ECC纤维用量为1%时,ECC砂浆和ECC-SFP材料的分别为27.5%和24.8%。通过添加ECC材料,ECC-SFP材料实现了一定程度的自我修复,但这仍需要进一步优化。为了提高ECC-SFP材料的自愈性能,对注浆工艺的优化和增加ECC纤维用量的研究是探索可行的方向。

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