Wu Jinyi, Liu Quantao, Wu Shaopeng
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2022 Aug 3;15(15):5351. doi: 10.3390/ma15155351.
Cracks are inevitable during the service life of asphalt pavement and the water at the fracture surfaces tends to cause the grouting materials to fail. Studies have shown that the catechol groups in adhesion proteins secreted by mussels can produce strong adhesion performance in the water. In this paper, the mussel-like adhesive L-Dopa Methacrylic anhydride (L-DMA) was prepared based on the concept of bionic design and used to improve the properties of asphalt. By using Fourier-transform infrared spectroscopy (FTIR) and Thermogravimetric analysis (TGA), the thermal stability and structural composition of L-DMA were investigated. Then, the rheological and low-temperature properties of L-DMA-modified asphalt were investigated using the dynamic shear rheological (DSR) test and bending beam rheological (BBR) test. Moreover, the modification mechanism was explored by FTIR. It was found that L-DMA can be effectively synthesized and has good thermal stability. The incorporation of L-DMA increases the composite modulus, viscosity, creep recovery rate and rutting factor of asphalt binder, resulting in an enhancement of its high-temperature performance. At a high L-DMA content of 10%, the low-temperature performance of the modified asphalt was enhanced. The modification of L-DMA to asphalt is mainly a physical process. Hydrogen bonds and conjugated systems generated by the introduction of catechol groups enhance the adhesion properties of asphalt. In general, L-DMA improves the properties of asphalt and theoretically can improve the water resistance of asphalt, which will be explored in future research.
在沥青路面的使用寿命期间,裂缝是不可避免的,而裂缝表面的水往往会导致灌浆材料失效。研究表明,贻贝分泌的粘附蛋白中的儿茶酚基团在水中能产生强大的粘附性能。本文基于仿生设计理念制备了贻贝仿生粘合剂L-多巴甲基丙烯酸酐(L-DMA),并将其用于改善沥青性能。通过傅里叶变换红外光谱(FTIR)和热重分析(TGA)研究了L-DMA的热稳定性和结构组成。然后,采用动态剪切流变(DSR)试验和弯曲梁流变(BBR)试验研究了L-DMA改性沥青的流变性能和低温性能。此外,通过FTIR探讨了改性机理。结果表明,L-DMA能够有效合成且具有良好的热稳定性。L-DMA的掺入提高了沥青胶结料的复合模量、粘度、蠕变恢复率和车辙因子,从而增强了其高温性能。当L-DMA含量为10%时,改性沥青的低温性能得到增强。L-DMA对沥青的改性主要是一个物理过程。儿茶酚基团的引入产生的氢键和共轭体系增强了沥青的粘附性能。总体而言,L-DMA改善了沥青性能,理论上可以提高沥青的耐水性,这将在未来的研究中进行探索。