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水性聚氨酯对乳化沥青性能的影响机制

Influence Mechanism of Waterborne Polyurethane on the Properties of Emulsified Asphalt.

作者信息

Tan Jian, Hou Shuguang, Jin Rui, Zhong Xiao, Zou Xiaoxi

机构信息

Zhaotong Yizhao Expressway Investment and Development Co., Ltd., Zhaotong 657000, China.

College of Transportation Engineering, Nanjing Tech University, Nanjing 211816, China.

出版信息

Materials (Basel). 2025 Jul 11;18(14):3280. doi: 10.3390/ma18143280.

Abstract

To elucidate the modification mechanism of waterborne polyurethane (WPU) on emulsified asphalt, anionic and cationic WPUs are utilized as modifiers. As well, their effects on physical properties, microstructure, and compatibility are characterized using basic performance tests, Fourier transform infrared spectroscopy (FTIR), and atomic force microscopy (AFM). The results show that WPU-modified emulsified asphalt exhibited a higher softening point, reduced penetration, and decreased ductility, suggesting enhanced high-temperature stability but diminished low-temperature flexibility. Among all samples, the combination of cationic WPU with cationic emulsified asphalt shows the highest softening point (54.1 °C), whereas cationic emulsified asphalt alone exhibits the lowest one (52.9 °C). Anionic emulsified asphalt demonstrates the highest penetration (79 mm), while non-ionic WPU combined with cationic emulsified asphalt shows the lowest one (59.3 mm). The ductility decreases from 90.3 cm to 28.7 cm. The storage stability varies with WPU ion type. Cationic WPU-modified samples showed the poorest storage stability (0.7% residue), while anionic-modified samples exhibit the best one (0.4% residue). FTIR analysis confirms the presence of characteristic WPU absorption peaks, indicating that physical blending occurs, and chemical interaction is limited. AFM observations reveal that anionic WPUs provide superior compatibility, forming fine, uniformly distributed particles with the lowest surface roughness (5.655 nm). In contrast, cationic WPUs form chain-like structures that cure effectively but exhibit poor dispersion. This study provides a basis for the development of high-performance WPU-modified emulsified asphalt.

摘要

为阐明水性聚氨酯(WPU)对乳化沥青的改性机理,使用阴离子型和阳离子型WPU作为改性剂。同时,通过基本性能测试、傅里叶变换红外光谱(FTIR)和原子力显微镜(AFM)对它们对物理性能、微观结构和相容性的影响进行了表征。结果表明,WPU改性乳化沥青表现出较高的软化点、降低的针入度和降低的延度,表明高温稳定性增强但低温柔韧性降低。在所有样品中,阳离子型WPU与阳离子型乳化沥青的组合显示出最高的软化点(54.1℃),而单独的阳离子型乳化沥青表现出最低的软化点(52.9℃)。阴离子型乳化沥青表现出最高的针入度(79mm),而非离子型WPU与阳离子型乳化沥青组合显示出最低的针入度(59.3mm)。延度从90.3cm降至28.7cm。储存稳定性随WPU离子类型而变化。阳离子型WPU改性样品的储存稳定性最差(残留率0.7%),而阴离子型改性样品的储存稳定性最佳(残留率0.4%)。FTIR分析证实了WPU特征吸收峰的存在,表明发生了物理共混,化学相互作用有限。AFM观察表明,阴离子型WPU具有更好的相容性,形成细小、均匀分布的颗粒,表面粗糙度最低(5.655nm)。相比之下,阳离子型WPU形成链状结构,固化效果好但分散性差。本研究为高性能WPU改性乳化沥青的开发提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c356/12298011/4f05541952ce/materials-18-03280-g001.jpg

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