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粉土/橡胶颗粒复合改性沥青的流变特性及微观结构研究

Investigation into the Rheological Properties and Microstructure of Silt/Crumb Rubber Compound-Modified Asphalt.

作者信息

Huang Lu, Geng Jiuguang, Chen Mingyuan, Niu Yanhui, Wang Wenhao, Gao Zichen

机构信息

School of Materials Science and Engineering, Chang'an University, Xi'an 710018, China.

出版信息

Polymers (Basel). 2023 May 27;15(11):2474. doi: 10.3390/polym15112474.

Abstract

Near the coast of China, a large amount of sediment is produced during construction work. In order to mitigate the environmental damage caused by sediment and enhance the performance of rubber-modified asphalt effectively, solidified silt material and waste rubber were prepared to modify asphalt, and its macroscopic properties, such as viscosity and chemical composition, were determined via a routine physical test, DSR, Fourier Transform Infrared Spectroscopy (FTIR), and Fluorescence Microscopy (FM). The results show that, with the increase in powder particles and the addition of a certain amount of hardened mud, the mixing and compaction temperature of modified asphalt can be significantly increased-still reaching the design standard. In addition, the high thermal stability and fatigue resistance of the modified asphalt were clearly better than those of the ordinary asphalt. From the FTIR analysis, rubber particles and hardened silt only exhibited mechanical agitation with the asphalt. Considering that excessive silt might result in the aggregation of matrix asphalt, the addition of an appropriate amount of hardened solidified silt material can eliminate the aggregation. Therefore, the performance of modified asphalt was optimum when solidified silt was added. Our research can provide an effective theoretical basis and reference values for the practical application of compound-modified asphalt. Therefore, 6%HCS(6:4)-CRMA have better performance. Compared to ordinary rubber-modified asphalt, the composite-modified asphalt binder has better physical properties and a more suitable construction temperature. The composite-modified asphalt uses discarded rubber and silt as raw materials, which can effectively protect the environment. Meanwhile, the modified asphalt has excellent rheological properties and fatigue resistance.

摘要

在中国沿海地区,建筑工程会产生大量沉积物。为了减轻沉积物对环境造成的破坏并有效提高橡胶改性沥青的性能,制备了固化淤泥材料和废橡胶来改性沥青,并通过常规物理试验、动态剪切流变仪(DSR)、傅里叶变换红外光谱仪(FTIR)和荧光显微镜(FM)测定其宏观性能,如粘度和化学成分。结果表明,随着粉末颗粒的增加以及一定量固化淤泥的加入,改性沥青的拌合及压实温度可显著提高——仍能达到设计标准。此外,改性沥青的高热稳定性和抗疲劳性明显优于普通沥青。从FTIR分析来看,橡胶颗粒和固化淤泥与沥青仅呈现机械搅拌作用。考虑到过量淤泥可能导致基质沥青聚集,添加适量的固化淤泥材料可消除聚集现象。因此,添加固化淤泥时改性沥青的性能最佳。我们的研究可为复合改性沥青的实际应用提供有效的理论依据和参考价值。因此,6%HCS(6:4)-CRMA具有更好的性能。与普通橡胶改性沥青相比,复合改性沥青结合料具有更好的物理性能和更合适的施工温度。复合改性沥青以废弃橡胶和淤泥为原料,可有效保护环境。同时,改性沥青具有优异的流变性能和抗疲劳性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfc9/10255894/a8262377d968/polymers-15-02474-g001.jpg

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