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Experimental Investigation of the Performance of a Hybrid Self-Healing System in Porous Asphalt under Fatigue Loadings

机译:疲劳载荷下多孔沥青中杂交自愈系统性能的实验研究

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摘要

Self-healing asphalt, which is designed to achieve autonomic damage repair in asphalt pavement, offers a great life-extension prospect and therefore not only reduces pavement maintenance costs but also saves energy and reduces CO2 emissions. The combined asphalt self-healing system, incorporating both encapsulated rejuvenator and induction heating, can heal cracks with melted binder and aged binder rejuvenation, and the synergistic effect of the two technologies shows significant advantages in healing efficiency over the single self-healing method. This study explores the fatigue life extension prospect of the combined healing system in porous asphalt. To this aim, porous asphalt (PA) test specimens with various healing systems were prepared, including: (i) the capsule healing system, (ii) the induction healing system, (iii) the combined healing system and (iv) a reference system (without extrinsic healing). The fatigue properties of the PA samples were characterized by an indirect tensile fatigue test and a four-point bending fatigue test. Additionally, a 24-h rest period was designed to activate the built-in self-healing system(s) in the PA. Finally, a damaging and healing programme was employed to evaluate the fatigue damage healing efficiency of these systems. The results indicate that all these self-healing systems can extend the fatigue life of porous asphalt, while in the combined healing system, the gradual healing effect of the released rejuvenator from the capsules may contribute to a better induction healing effect in the damaging and healing cycles.
机译:自我愈合沥青,旨在实现沥青路面中的自主损伤修复,提供良好的寿命前景,因此不仅降低了路面维护成本,而且还节省了能源并减少了二氧化碳排放量。结合的沥青自我愈合系统,包括封装的雷化器和感应加热,可以用熔化的粘合剂和老化的粘合剂复活愈合,并且两种技术的协同效果在单一的自我愈合方法上表现出愈合效率的显着优势。本研究探讨了多孔沥青中愈合系统的疲劳寿命延伸前景。为此目的,制备具有各种愈合系统的多孔沥青(PA)试样,包括:(i)胶囊愈合系统,(ii)感应愈合系统,(iii)组合愈合系统和(iv)参考系统(没有外在愈合)。 PA样品的疲劳性能通过间接拉伸疲劳试验和四点弯曲疲劳试验表征。此外,24-H休息时间旨在激活PA中的内置自愈系统。最后,采用了破坏性和治疗计划来评估这些系统的疲劳损伤愈合效率。结果表明,所有这些自我愈合系统都可以延长多孔沥青的疲劳寿命,而在组合的愈合系统中,来自胶囊的释放的恢复剂的逐渐愈合效果可能导致损伤和愈合中更好的感应愈合效果循环。

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