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Effect of micro-Al2O3 contents on mechanical property of carbon fiber reinforced epoxy matrix composites
writer:Zhi Wang, Xueyou Huang, Guizhe Zhao, et al
keywords:Layered structure, Polymer-matrix composites, Delamination, Mechanical properties
source:期刊
specific source:Composites part B: Engineering
Issue time:2016年
The effects of integrating micro-Al2O3 onto carbon fiber surface and its contents on mechanical properties of carbon fiber reinforced polymer composites were investigated. Mode II interlaminar fracture toughness, impact strength, flexural properties and initial modulus were determined by mechanical test machines and dynamic mechanical analyzer. The reason for performance improvement was discussed based on scanning electron microscopy. The mode II interlaminar fracture toughness, impact strength, and flexural strength of composites without addition of micro-Al2O3 were 348 J/m2, 118 kJ/m2 and 682 MPa, respectively. However, the mechanical properties of modified composites were improved significantly. The mechanical properties were optimum when the areal density of micro-Al2O3 particles reached 15 g/m2 at which the mode II interlaminar fracture toughness, impact strength, and flexural strength reached 522 J/m2, 161.7 kJ/m2 and 759 MPa, respectively. Furthermore, these composites with addition micro- Al2O3 in the layers showed an improvement in thermal property.