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Comparing the fracture toughness of 3-D braided preform composites with z-fiber-reinforced laminar composites

机译:比较3D编织预成型复合材料和Z纤维增强层状复合材料的断裂韧性

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摘要

Organic polymer engineering composite materials based on layered fabrics have many advantageous properties and processing features. However, performance properties of the layered OPECs, especially impact strength, delamination resistance, and fracture toughness are poor. Three-dimensional preforms fabricated with 3-D weaving, knitting and braiding techniques, are employed to improve the shortcomings of 2-D layered fabric reinforcements. z-directional microfiber-reinforced laminar composites were recently developed to improve impact strength and fracture toughness without reducing in-plane performance properties at minimal added cost and at higher productivity in the Flock Materials Laboratory at the University of Massachusetts Dartmouth. The effectiveness of laminar composite z-directional microfiber reinforcement (by a flocking process) in improving fracture toughness was compared with that of a 3-D braided 8-layer glass fiber preform/epoxy composite plate. The results show that the Mode I fracture toughness (G^sub I^) of the 3-D braided preform reinforced composites are about 10 times of the 2-D layered glass fabric laminar composites (control) as expected. This is comparable to the results of z-directional microfiber-reinforced composites; up to 9 times increase in G^sub I^ over that of 2-D glass fabric/epoxy laminar composite (control). The presence of through-thickness microfiber (flock fiber) reinforcements in the matrix resin between reinforcement layers is found not to reduce the in-plane mechanical properties; the fracture toughness however, increases significantly.
机译:基于层状织物的有机聚合物工程复合材料具有许多有利的特性和加工特征。但是,层状OPEC的性能,特别是冲击强度,抗分层性和断裂韧性较差。采用3-D编织,编织和编织技术制作的三维预成型坯用于改善2-D分层织物增强材料的缺点。最近,马萨诸塞州达特茅斯大学的羊群材料实验室以最小的增加成本和更高的生产率开发了z方向微纤维增强层状复合材料,以提高冲击强度和断裂韧性而又不降低面内性能。将层状复合Z向微纤维增强材料(通过植绒工艺)在改善断裂韧性方面的效果与3-D编织8层玻璃纤维预成型坯/环氧树脂复合板的有效性进行了比较。结果表明,3-D编织预成型增强复合材料的模式I断裂韧性(G ^ sub I ^)约为预期的2-D分层玻璃织物层状复合材料(对照)的10倍。这可与z方向微纤维增强复合材料的结果相媲美。与2-D玻璃织物/环氧树脂层状复合材料(对照)相比,G 2最多增加9倍。发现在增强层之间的基质树脂中存在增厚的超细纤维(植绒纤维)增强材料不会降低面内机械性能;但是,断裂韧性显着提高。

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