Castor Oil-Based Polyurethane/S2 Glass/Aramid Hybrid Composites Manufactured by Vacuum Infusion

被引:5
作者
da Cruz, Joziel Aparecido [1 ]
Kerche, Eduardo Fischer [1 ]
Bianchi, Otavio [1 ]
Manes, Andrea [2 ]
Amico, Sandro Campos [1 ]
机构
[1] Fed Univ Rio Grande do Sul UFRGS, PPGE3M, BR-9150197 Porto Alegre, Rio Grande do S, Brazil
[2] Politecn Milan, Dept Mech Engn, I-20156 Milan, Italy
关键词
aramid; glass; hybrid laminates; castor oil polyurethane; vacuum infusion; energy absorption; dynamical mechanical response; BEHAVIOR; FIBERS; CARBON; DAMAGE; HEMP;
D O I
10.3390/polym14235150
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This study evaluates the hybridization effect of S2-glass/aramid on polyurethane (PU) composites produced by vacuum infusion. Different laminates were produced with similar thickness (around 2.5 mm), using, as reinforcement, only aramid fabrics (five layers, named as K-5) or only S2-glass fabrics (eight layers, named as G(8)). Furthermore, hybridization was obtained by manufacturing symmetrical hybrid inter-ply laminates, with four S2-glass layers and two of aramid, (G(2)K)(S) and (KG(2))(S). The mechanical response of the laminates was evaluated in tensile, interlaminar shear strength, dynamical mechanical analysis and quasi-static indentation tests, and related to their morphological characteristics. The main results show that the pure glass composites presented less voids, but a higher density as well as higher tensile stiffness and strength. The aramid laminates showed a high capability for absorbing impact energy (ca. 30% higher than the pure glass laminates), and the hybrid laminates had intermediate properties. More importantly, this work shows the possibility of using a polyurethane matrix for vacuum infusion processing, effective even for aramid/S2-glass hybrid composites with thermoset polyurethane resin. This study is therefore promising for impact absorption in applications such as protective armor. The studied hybrid laminate may display a suitable set of properties and greater energy absorption capability and penetration resistance for impact applications.
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页数:15
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