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Self-Healing Property of Ultra-Thin Wearing Courses by Induction Heating

机译:感应加热超薄磨损课程的自我修复特性

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摘要

Ultra-thin wearing course (UTWC) has been developed in pavement preventive maintenance for many years. However, how to prolong the service life of UTWC still requires further research. This study introduced AC-5 and SMA-5 asphalt mixtures, which can be induction heated. Steel fiber and steel slag were used in the mixtures as additives. Marshall Stability and induction heating property of mixtures were characterized. In addition, self-healing property of UTWC materials had been emphatically conducted. Adding steel fiber in mixtures led to higher Marshall Stability and lower flow value, while steel slag generally showed a negative effect. Induction heating property showed a positive relationship with the additives. Induction heating time was positively correlated to the healing ratio of the mixtures. Induction heating on the mixtures could recover the strength of mixtures to a certain degree. Mixtures with more steel fiber showed a higher healing ratio. Basalt-steel slag based mixtures showed better healing ratios than the basalt based mixtures. The healing ratios of mixtures illustrated a decreasing tendency as the healing cycle increased.
机译:超薄佩戴课程(UTWC)已经在路面预防性维护中开发了多年。然而,如何延长UTWC的使用寿命仍需要进一步研究。本研究介绍了AC-5和SMA-5沥青混合物,其可以感应加热。钢纤维和钢渣用于添加剂的混合物中。表征了混合物的马歇尔稳定性和感应加热性质。此外,重点进行了UTWC材料的自愈性。在混合物中添加钢纤维导致了更高的马歇尔稳定性和更低的流量值,而钢渣通常显示出负面影响。感应加热性能显示与添加剂的阳性关系。感应加热时间与混合物的愈合比呈正相关。混合物上的感应加热可以将混合物强度恢复到一定程度上。具有更多钢纤维的混合物显示出更高的愈合比率。基于玄武岩 - 钢渣的混合物显示出比玄武岩的混合物更好的愈合比率。随着愈合循环增加,混合物的愈合比例示出了降低的趋势。

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