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Mechanical and Self-Healing Performances of Asphalt Mixtures Containing Recycled Asphalt Materials and Light-Activated Self-Healing Polymer

机译:包含再生沥青材料和光活化自修复聚合物的沥青混合料的机械和自修复性能

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The objective of this study is to evaluate the efficiency of a new generation of ultraviolet (UV) light-induced self-healing polymers in enhancing the durability of asphalt mixtures and improving their self-healing capabilities. Mixtures were prepared using two different binders, with and without recycled materials, and self-healing polymers. Results showed that the addition of recycled asphalt materials to mixtures prepared with an unmodified binder (PG 67-22) negatively affected healing recovery at room temperature. The self-healing properties of the mixtures were improved by increasing the healing temperature from 25 degrees C to 50 degrees C, which indicates the temperature dependency of the self-healing properties of asphalt mixtures. The addition of 5% self-healing polymers to the control mixture followed by 48 h of UV light exposure resulted in an increase in the self-healing properties of the mixtures prepared with PG 67-22 binder. Semicircular bending (SCB) test results showed that the incorporation of self-healing polymer and 48 h of UV light exposure improved the cracking resistance of the mixture. Loaded-wheel tracking (LWT) test results showed that the addition of the self-healing polymer caused an increase in the rut depth of the samples prepared with the unmodified binder. However, the final rut depth was less than 6 mm, which is an acceptable rutting performance. Thermal stress restrained specimen test results showed that self-healing polymer improved the low-temperature cracking performance of the mix by increasing the fracture load and decreasing the fracture temperature.
机译:这项研究的目的是评估新一代的紫外线(UV)光诱导的自愈聚合物在增强沥青混合料的耐久性和改善其自愈能力方面的效率。使用两种不同的粘合剂(有无回收材料)和自修复聚合物来制备混合物。结果表明,将再生沥青材料添加到使用未改性粘合剂(PG 67-22)制备的混合物中,会对室温下的愈合恢复产生负面影响。通过将愈合温度从25摄氏度提高到50摄氏度来改善混合物的自愈性能,这表明沥青混合物的自愈性能与温度有关。向对照混合物中添加5%的自修复聚合物,然后暴露于紫外线48 h,可提高用PG 67-22粘合剂制备的混合物的自修复性能。半圆弯曲(SCB)测试结果表明,自修复聚合物的加入和48 h的紫外线照射可改善混合物的抗龟裂性。负载车轮跟踪(LWT)测试结果表明,自修复聚合物的添加导致未改性粘合剂制备的样品的车辙深度增加。然而,最终车辙深度小于6mm,这是可接受的车辙性能。抑制热应力的试样测试结果表明,自修复聚合物通过增加断裂载荷和降低断裂温度来改善混合物的低温裂解性能。

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