Formed part preparation method based on reduced graphene oxide and copper composite material
A composite material and graphene technology, applied in transportation and packaging, metal processing equipment, etc., can solve the problems of high equipment requirements, low sample preparation efficiency, unfavorable wider application of graphene/copper-based composite materials, etc., and meet equipment requirements Low, high production efficiency, the effect of reducing adverse effects
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Embodiment 1
[0033] Concrete preparation process comprises the following steps:
[0034] (1) Preparation of graphene oxide / copper mixed powder
[0035] 1.1 Add graphene oxide with a mass fraction of 0.5g to 100ml of absolute ethanol, and use ultrasonic vibration for 2h to obtain a mixed solution;
[0036] 1.2 Add 99.5g of electrolytic copper powder to the graphene oxide solution, and then put it into a ball mill jar. Use high-purity argon to clean the ball mill tank for 3 times, then pump the ball mill tank to a vacuum state (below 1000Pa) for mechanical ball milling, the ball milling time is 20h, the speed is 360r / min, the steel ball material is quenched stainless steel, the ball-to-material ratio is 10:1.
[0037] 1.3 After the ball milling, pour the slurry into a beaker and dry it in a vacuum oven to obtain a graphene oxide / copper mixed powder. The mass percentage of graphene oxide in the graphene oxide / copper mixed powder is 0.5%.
[0038] (2) Graphene oxide / copper mixed powder afte...
Embodiment 2
[0046] Concrete preparation process comprises the following steps:
[0047] (1) Preparation of graphene oxide / copper mixed powder
[0048] 1.1 Add graphene oxide with a mass fraction of 0.5g to 100ml of absolute ethanol, and use ultrasonic vibration for 2h to obtain a mixed solution;
[0049] 1.2 Add 99.5g of electrolytic copper powder to the graphene oxide solution, and then put it into a ball mill jar. Use high-purity argon to clean the ball mill tank for 3 times, then pump the ball mill tank to a vacuum state (below 1000Pa) for mechanical ball milling, the ball milling time is 20h, the speed is 360r / min, the steel ball material is quenched stainless steel, the ball-to-material ratio is 10:1.
[0050] 1.3 After the ball milling, pour the slurry into a beaker and dry it in a vacuum oven to obtain a graphene oxide / copper mixed powder. The mass percentage of graphene oxide in the graphene oxide / copper mixed powder is 0.5%.
[0051] (2) Graphene oxide / copper mixed powder afte...
Embodiment 3
[0059] Concrete preparation process comprises the following steps:
[0060] (1) Preparation of graphene oxide / copper mixed powder
[0061] 1.1 Add graphene oxide with a mass fraction of 0.5g to 100ml of absolute ethanol, and use ultrasonic vibration for 2h to obtain a mixed solution;
[0062] 1.2 Add 99.5g of electrolytic copper powder to the graphene oxide solution, and then put it into a ball mill jar. Use high-purity argon to clean the ball mill tank for 3 times, then pump the ball mill tank to a vacuum state (below 1000Pa) for mechanical ball milling, the ball milling time is 20h, the speed is 360r / min, the steel ball material is quenched stainless steel, the ball-to-material ratio is 10:1.
[0063] 1.3 After the ball milling, pour the slurry into a beaker and dry it in a vacuum oven to obtain a graphene oxide / copper mixed powder. The mass percentage of graphene oxide in the graphene oxide / copper mixed powder is 0.5%.
[0064] (2) Graphene oxide / copper mixed powder afte...
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