聚氨酯
异氰酸酯
极限抗拉强度
材料科学
耐水性
氨基甲酸酯
耐化学性
复合材料
化学工程
高分子化学
有机化学
化学
工程类
作者
Yong Rok Kwon,Jun Ho Park,Hae Chan Kim,Seok Kyu Moon,Dong Hyun Kim
出处
期刊:Polymers
[MDPI AG]
日期:2024-10-01
卷期号:16 (19): 2794-2794
标识
DOI:10.3390/polym16192794
摘要
Waterborne polyurethane (WPU) often suffers from poor water resistance and mechanical properties due to hydrophilic emulsifiers. To address these issues, this study introduces glycidyl carbamate (GC) as a crosslinker to improve WPU performance. Three types of GC were synthesized using aliphatic, cycloaliphatic, and aromatic isocyanates, respectively. The crosslinked network was established through a reaction between the epoxide group of GC and the carboxylic acid and amine groups of WPU. Among these, the WPU film utilizing aromatic isocyanate-based GC exhibited the highest crosslink density, modulus, hardness, and water resistance, due to the rigidity of the aromatic molecular structure. However, the film displayed excessive brittleness, resulting in reduced tensile strength, along with yellowing typically associated with aromatic compounds. The WPU crosslinked with cycloaliphatic GC demonstrated the next best mechanical properties and water resistance, with a 2.7-fold increase in tensile strength, a 1.5-fold increase in hardness, and a 66% reduction in the water swelling ratio compared to neat WPU. This study presents a novel and effective strategy to enhance the water resistance and mechanical properties of WPU films, making them suitable for advanced coating applications.
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