Modified graphene/thermosetting resin composite material and preparation method thereof
A technology of resin composite materials and graphene, which is applied in the field of modified graphene/thermosetting resin composite materials and its preparation, can solve the problems of deteriorating composite material manufacturability, hindering electron movement on graphene, and insufficient electrical properties of graphene Take advantage of other issues to achieve the effects of reducing leakage current, low manufacturing cost, and wide applicability
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Embodiment 1
[0038] 1. Preparation of titanium diboride oxide
[0039] Under aerobic conditions, oxidize 10 g of titanium diboride with a particle size of less than 200 nanometers at 600 ° C for 10 minutes to obtain a crude product, disperse it in 200 mL of ethanol, stir it, filter it with suction, and dry it to obtain oxidized titanium diboride , and its infrared spectrum and X-ray diffraction patterns are shown in the attached figure 1 and 2 .
[0040] 2. Preparation of aminated titanium diboride oxide
[0041]Disperse 10g of titanium diboride oxide into 50mL of hydrogen peroxide solution with a mass fraction of 35%, and react at 100°C for 5h; after the reaction, wash, filter with suction, and dry in a vacuum oven at 60°C for 12h to obtain Hydroxylated titanium diboride oxide;
[0042] Add 10 g of hydroxylated oxidized titanium diboride to 100 mL of absolute ethanol, mix well by ultrasonic, add 0.1 g of γ-aminopropyltriethoxysilane under the protection of nitrogen, and stir at 60° C....
Embodiment 2
[0054] 1. Preparation of modified graphene
[0055] Weigh 1g of graphite oxide and disperse it in 600mL N,N-dimethylformamide, stir and sonicate for 1h to obtain a graphene oxide dispersion, add 0.025g of aminated titanium diboride oxide to the graphene oxide dispersion , ultrasonically stirred, reacted at 60°C for 12h, then added 10g L-ascorbic acid, raised the temperature of the reaction solution to 90°C and reacted for 24h, then filtered, washed, and dried to obtain modified graphene, which was magnified 25 thousand times The scanning electron microscope picture and X-ray diffraction picture are respectively shown in the appendix image 3 and 4 .
[0056] 2. Preparation of modified graphene / epoxy resin composites
[0057] Add 0.787g of modified graphene and 100g of epoxy resin (grade E-51) into the flask, stir at 60°C and ultrasonic for 1 hour, vacuum degassing for 30min, add 4g of 2-ethyl-4-methyl imidazole, continue to stir for 10 minutes to obtain a uniform mixture; ...
Embodiment 3
[0059] 1. Preparation of modified graphene
[0060] Weigh 1g of graphite oxide and disperse it in 600mL N,N-dimethylformamide, stir and sonicate for 1h to obtain a graphene oxide dispersion, add 0.05g of aminated titanium diboride oxide to the graphene oxide dispersion , ultrasonically stirred, reacted at 60°C for 12h, then added 10g L-ascorbic acid, raised the temperature of the reaction solution to 90°C and reacted for 24h, then filtered, washed, and dried to obtain modified graphene, which was magnified 25 thousand times The scanning electron microscope picture and X-ray diffraction picture are respectively shown in the appendix image 3 and 4 .
[0061] 2. Preparation of modified graphene / epoxy resin composites
[0062] Add 0.825g of modified graphene and 100g of epoxy resin (grade E-51) into the flask, stir at 60°C and ultrasonic for 1 hour, vacuum degassing for 30min, add 4g of 2-ethyl-4-methyl imidazole, continue to stir for 10 minutes to obtain a uniform mixture; p...
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