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Effect of Fillers on Mechanical Properties and Fracture Toughness of Glass Fabric Reinforced Epoxy Composites

机译:填料对玻璃纤维增​​强环氧树脂复合材料的力学性能和断裂韧性的影响

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Plain weave woven glass fabric reinforced epoxy (G-E) composite filled with two different types of fillers namely graphite, silicon carbide (each 5 and 10 wt%) was fabricated by hand lay-up method and compressed using hot press. These composites were investigated for their static mechanical properties such as tensile, flexural properties and impact strength as well as mode-I fracture toughness as per ASTM standards. Experimental results on mechanical properties indicate that the strength and the modulus in tensile and flexural mode for G-E composite increase with increasing filler loading. The unfilled G-E composite has the tensile strength of 305 MPa and increased to 404.2 MPa for 10 wt% silicon carbide. However, in three-point bend mode, addition of graphite in G-E showed the highest flexural strength as well as modulus. Mode-I fracture toughness test results indicated that the graphite filler loading improved the toughness of G-E composite. Selected failed samples under tensile, bending and mode-I fracture were examined using scanning electron microscope to identify the fracture features.
机译:通过手工铺层法制造并填充了两种不同类型的填料(石墨,碳化硅(分别为5和10 wt%))的平纹编织玻璃纤维增​​强环氧树脂(G-E)复合材料,并通过热压进行压缩。根据ASTM标准,对这些复合材料的静态机械性能(如拉伸,弯曲性能和冲击强度以及I型断裂韧性)进行了研究。力学性能的实验结果表明,G-E复合材料在拉伸和弯曲模式下的强度和模量随填料含量的增加而增加。未填充的G-E复合材料的抗拉强度为305 MPa,对于10 wt%的碳化硅,则增加到404.2 MPa。但是,在三点弯曲模式下,在G-E中添加石墨显示出最高的弯曲强度和模量。 I型断裂韧性测试结果表明,石墨填料的加入提高了G-E复合材料的韧性。使用扫描电子显微镜检查在拉伸,弯曲和I型断裂下选择的失效样品,以鉴定断裂特征。

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