High-strength hydrogel based on three-dimensional network support and preparation method of high-strength hydrogel
A three-dimensional network and hydrogel technology, applied in medical science, prosthetics, tissue regeneration, etc., can solve the problems of inability to meet the mechanical requirements of human fibrocartilage, hydration, frictional inadaptability, etc., and achieve easy mass production Production, enhanced mechanical properties, low energy consumption
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Embodiment 1
[0030] Example 1: Weigh 1.579g of polyvinyl alcohol and place it in a conical flask, add 30mL of water, and dissolve under magnetic stirring at 90°C for 3 hours to dissolve, continue stirring until it cools down to room temperature, wrap a sealing film on the bottle mouth during stirring to prevent Water evaporates; prepare PCL slurry, use 3D printing to make 20*20*2mm 3PCL three-dimensional network scaffolds, put the printed scaffolds in a vacuum drying oven to evacuate the scaffolds to keep them completely dry; put the prepared scaffolds in the mold, and pour the hydrogel prepolymer solution cooled to room temperature In the mold, just pour a small amount to cover the surface of the bracket. Then put the mold into -20℃ refrigerator and freeze it for 7 hours, then take it out and let it thaw at room temperature for 3 hours. The hydrogel material is stored frozen. Tests show that the compressive strength of the composite PVA hydrogel material penetrating the PCL three-dimens...
Embodiment 2
[0031] Example 2: Weigh 7.500g of polyvinyl alcohol and place it in a conical flask, add 30mL of water, and dissolve under magnetic stirring at 90°C for 3 hours to dissolve, continue stirring until it cools to room temperature, wrap a sealing film on the bottle mouth during stirring to prevent Water evaporates; prepare PCL slurry, use 3D printing to make 40*40*2mm 3 PCL three-dimensional network scaffolds, put the printed scaffolds in a vacuum drying oven to evacuate the scaffolds to keep them completely dry; put the prepared scaffolds in the mold, and pour the hydrogel prepolymer solution cooled to room temperature In the mold, just pour a small amount to cover the surface of the bracket. Then put the mold into -20℃ refrigerator and freeze it for 7 hours, then take it out and let it thaw at room temperature for 3 hours. The hydrogel material is stored frozen. Tests show that the compressive strength of the composite PVA hydrogel material penetrating the PCL three-dimensiona...
Embodiment 3
[0032] Example 3: Weigh 1.579g of polyvinyl alcohol and place it in a conical flask, add 30mL of water, stir magnetically for 3 hours under heating at 90°C to dissolve, weigh 1.579g of polyacrylamide and add it to a conical flask, and add a crosslinking agent at the same time N,N'-methylenebisacrylamide 0.001g, stir to dissolve, and add 0.01g of initiator ammonium persulfate, continue to stir until it cools down to room temperature, wrap a sealing film on the bottle mouth during stirring to prevent water from evaporating ; Prepare PCL slurry, use 3D printing to make 20*20*2mm 3 PCL three-dimensional network scaffolds, put the printed scaffolds in a vacuum drying oven to evacuate the scaffolds to keep them completely dry; put the prepared scaffolds in the mold, and pour the hydrogel prepolymer solution cooled to room temperature In the mold, just pour a small amount to cover the surface of the bracket. Then put the mold into -20℃ refrigerator and freeze it for 7 hours, then ta...
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