材料科学
热塑性聚氨酯
极限抗拉强度
复合材料
吸水率
胶粘剂
织物
复合数
杨氏模量
渗透(战争)
聚氨酯
艾氏冲击强度试验
氢键
延伸率
模数
色散(光学)
粘接
挤压
三元运算
相(物质)
热塑性塑料
聚酰胺
作者
Chenyu He,Wenjie Mou,Jinxin Zhu,Chilou Zhou
摘要
ABSTRACT To address interfacial degradation of thermoplastic polyurethane (TPU) adhesives for cotton fabrics during water exposure in applications such as sports footwear and outdoor equipment, a polyester/polyether‐type TPU blending strategy was developed. Maleic anhydride‐grafted TPU (TPU‐g‐MAH) was employed as a compatibilizer to construct a ternary system of polyester‐type TPU/TPU‐g‐MAH/polyether‐type TPU. The compatibilizer promoted hydrogen bonding among hard segments and formed a physical cross‐linked network, facilitating uniform dispersion of polyether segments and improving phase compatibility. This synergistic structure effectively suppressed water penetration and enhanced hydrolytic stability. The optimized formulation (mass ratio: 90/0.5/10) exhibited a tensile strength of 14.58 MPa, elongation at break of 1584%, and T‐peel strength of 12.68 N/mm. After 96 h of water immersion, water absorption was only 1.25%, and the tensile and peel strength retentions reached 91.02% and 88.56%, respectively. These results demonstrate that the TPU‐g‐MAH‐modified polyester/polyether TPU system provides a robust approach to develop water‐resistant, high‐toughness TPUs for textile bonding and outdoor functional materials.
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