聚脲
弹性体
硅酮
胶粘剂
材料科学
应力松弛
复合材料
聚二甲基硅氧烷
动态力学分析
玻璃化转变
异氰酸酯
氢键
高分子化学
硅烷
聚合物
化学工程
涂层
分子
化学
有机化学
聚氨酯
图层(电子)
蠕动
工程类
作者
Shilong Zhang,Youhao Xiong,Yangwei Wang,Yuqi Ma,Jialiang Li,Chaobo Jiang,Ce Wang,Yanling Zhu,Yongsheng Zhao,Guangcheng Zhang
摘要
Abstract Polyurea (PU) elastomers have attracted considerable attention in the field of protective polymeric coatings. In this work, a dithiol‐terminated boronic ester was synthesized and used to incorporate dynamic boron–oxygen (B–O) bonds in the PU main chain based on thiol isocyanate while amino‐terminated polydimethylsiloxane (PDMS) was introduced to retain good chain flexibility. The modified PU elastomer was found to have a microphase‐separated structure in which the hard blocks served as physical crosslinks. The glass transition temperature ( T g ) slightly increases when dynamic B–O bonds exist while further introduction of PDMS soft segment can lower T g to −55.63 °C. The introduction of dynamic B–O bonds and diminished hydrogen bonding led to a decrease in mechanical strength and elongation at break. Interestingly, the simultaneous incorporation of PDMS and dynamic B–O bonds is favorable for strain rate dependence and suppressing stress relaxation. The potential for bond‐exchange interactions between the dynamic B–O bonds and hydroxyl groups on metal surfaces substantially improved the adhesion of the PU elastomer to metal substrates. Therefore, our work can offer valuable insights for the structural design of functional PU coatings tailored for anti‐impact applications. © 2024 Society of Chemical Industry.
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