聚氨酯
材料科学
亚胺
复合材料
粘弹性
粘结强度
极限抗拉强度
聚合物
动态力学分析
二硫键
有机化学
化学
胶粘剂
生物化学
催化作用
图层(电子)
作者
Guangchao Dong,Yuanzhi Chang,Cangang Li,Lifen Zhao,Xiujuan Tian,Xueping Liu
摘要
Abstract Polyurethane is a widely used viscoelastic polymer known for its exceptional damping properties. This paper focuses on the introduction of disulfide and imine bonds into the polyurethane matrix to enhance its damping capabilities, mechanical properties, and self‐healing ability. Dynamic mechanical analysis shows that the synergistic effect of disulfide bond and imine bonds extends the effective damping temperature range of the polyurethane to 118°C (−18 to 100°C), while the effective damping frequency extrapolates to a range of 10 −2 –10 5 Hz. Furthermore, the addition of imide bonds compensates for the relatively low mechanical properties associated with disulfide bonds, allowing the polyurethane to achieve a tensile strength of 14.7 MPa at room temperature. Self‐repair tests reveal that the combined action of these two dynamic bonds enables a remarkable 97% repair efficiency of polyurethane, exhibiting excellent self‐healing performance. This study presents a novel approach to enhance the comprehensive properties of polyurethane.
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