Shen Zhen, Wang Shikun, Hu Zhe, Zhao Xiaokang
Overseas Department of CCCC Construction Group Co., Ltd., Beijing 110110, China.
School of Highway, Chang'an University, Xi'an 710064, China.
Materials (Basel). 2025 Jun 6;18(12):2684. doi: 10.3390/ma18122684.
Foamed asphalt cold recycled mixtures can provide an effective approach for the reutilization of reclaimed asphalt pavement (RAP), but conventional asphalt foaming technology primarily exploits matrix asphalt as the raw material. To address this issue, this study explores rubberized asphalt with cold recycling technology to develop a foamed rubber asphalt cold recycled mixture (FRCM). The semi-circular bending (SCB) test was employed to investigate its cracking resistance. Load-crack mouth opening displacement (CMOD)-time curves under various temperatures were analyzed, and digital image technique was resorted to monitor crack propagation and growth rates. Fracture toughness, fracture energy, and flexibility index were compared with those of traditional foamed matrix asphalt cold recycled mixture (FMCM). The results show that, under the same test temperature, the FRCM exhibits slower crack propagation; larger peak load; and higher fracture toughness, fracture energy, and flexibility index in comparison with the FMCM. These improvements are more pronounced at low temperatures. For both mixtures, fracture toughness and fracture energy are decreased with increasing the temperature, while the flexibility index shows the opposite trend. The rigid zone accounts for a larger portion of fracture energy at low temperatures. The findings provide technical references for improving the cracking resistance of cold recycled asphalt layers using rubberized asphalt.
泡沫沥青冷再生混合料可为旧沥青路面(RAP)的再利用提供一种有效方法,但传统的沥青发泡技术主要以基质沥青为原料。为解决这一问题,本研究探索将橡胶沥青与冷再生技术相结合,以开发一种泡沫橡胶沥青冷再生混合料(FRCM)。采用半圆弯曲(SCB)试验来研究其抗裂性能。分析了不同温度下的荷载-裂缝口张开位移(CMOD)-时间曲线,并借助数字图像技术监测裂缝扩展和增长率。将断裂韧性、断裂能和柔性指数与传统泡沫基质沥青冷再生混合料(FMCM)进行了比较。结果表明,在相同试验温度下,与FMCM相比,FRCM的裂缝扩展较慢;峰值荷载较大;断裂韧性、断裂能和柔性指数较高。这些改善在低温下更为明显。对于两种混合料,断裂韧性和断裂能均随温度升高而降低,而柔性指数则呈现相反趋势。在低温下,刚性区在断裂能中所占比例更大。研究结果为利用橡胶沥青提高冷再生沥青层的抗裂性能提供了技术参考。