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Improving the Tensile Strength of a Novel Double Hook Design Manufactured by Nanosilica Epoxy Reinforced Aramid/Carbon Composites

机译:提高纳米二氧化族环氧加强芳族聚酰胺/碳复合材料制造的新型双钩设计的拉伸强度

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This paper presents the novel design of a double hook manufactured with advanced composite materials and nanomaterials. For the preparation of the composite materials an epoxy resin was used while the fiber reinforcement was in the form of hybrid aramid/carbon twill fabric. The nanoparticles were silica nanospheres dispersed in the epoxy matrix. The nanospheres were in the form of a colloidal silica-sol and they were added in the epoxy resin so to form a carefully prepared masterbatch. A series of tensile and fracture toughness tests were performed in order to evaluate the effect of the nanosilica concentration as well as the strength of the hybrid aramid/carbon composites. Upon the design and the manufacture of the innovative geometry of the double hook, comparative uniaxial tensile tests were performed. The results proved that the use of the silica nanoparticles significantly increase the strength of the hook, while affect considerably its tensile fracture behavior.
机译:本文介绍了用先进的复合材料和纳米材料制造的双钩的新颖设计。为了制备复合材料,使用环氧树脂,同时纤维增强物为杂交芳族胺/碳斜面织物的形式。纳米颗粒是分散在环氧基质中的二氧化硅纳米球。纳米球是胶体硅胶的形式,并在环氧树脂中加入,以形成仔细制备的母料。进行一系列拉伸和断裂韧性试验,以评估纳米硅浓度的效果以及杂交芳族聚酰胺/碳复合材料的强度。在设计和制造双钩的创新几何形状时,进行比较单轴拉伸试验。结果证明,二氧化硅纳米粒子的使用显着提高了钩的强度,同时影响其拉伸裂缝行为。

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