芳纶
材料科学
复合材料
热塑性聚氨酯
粘附
热塑性塑料
聚氨酯
分层(地质)
聚酰胺
热塑性复合材料
复合数
复合材料层合板
热塑性弹性体
基质(化学分析)
石墨烯
聚合物
活化能
动态力学分析
压力(语言学)
消散
聚合物混合物
扩散
纳米复合材料
流变学
吸收(声学)
聚酯纤维
胶粘剂
艾氏冲击强度试验
凯夫拉
抗撕裂性
吸水率
丝带
热成型
合成纤维
机身
油漆附着力测试
断裂力学
挤压
热固性聚合物
纤维
作者
Ícaro José de Araújo Silva,Joziel Aparecido da Cruz,Sandro Campos Amico,Otávio Bianchi
摘要
ABSTRACT This study examines the interlaminar adhesion of aramid composite laminates bonded with thermoplastic polyurethane (TPU) films and fabricated via hot pressing. Optimal processing parameters 200°C, 10 MPa, and 25 min were identified through a Design of Experiments (DOE) approach, resulting in a 67% improvement in T‐peel strength over non‐optimized samples. Laminates with TPU contents ranging from 13.90 to 38.10 wt.% were produced, with the best adhesion observed at 29.90 wt.% (two TPU layers), where enhanced matrix diffusion promoted interfacial bonding. In contrast, excessive TPU reduced adhesion into the fiber bundles. The intermediate formulation exhibited 21% higher peel strength than the lowest‐content laminate. Dynamic mechanical analysis indicated lower activation energy for segmental motion at the optimal composition, reflecting improved matrix–fiber interaction. These findings offer valuable insight for designing aramid‐TPU composites with enhanced energy absorption and delamination resistance, particularly for protective and ballistic applications, while guiding the selection of matrix content and processing conditions for structural optimization.
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