Preparation method of degree-of-functionality-adjustable ultraviolet light cured waterborne resin
A water-based resin and ultraviolet light technology, applied in the field of polymer materials, can solve the problems of single and single structure performance, achieve good wear resistance, good comprehensive physical and chemical properties, and solve the effect of water solubility mismatch
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Embodiment 1
[0049] In the first step, add 20g solvent propylene glycol methyl ether acetate, 40g methyl methacrylate, 20g butyl methacrylate, 40g methyl acrylate, 10g butyl acrylate, 60g hydroxyethyl methacrylate in a 500mL three-necked flask, 30g of styrene, stirred evenly, added catalyst azobisisobutyronitrile, which accounts for 0.8% of the total mass of the monomer, heated to 67°C while stirring, and reacted for 3 hours to obtain polyacrylate segment ① with hydroxyl groups in the side chain. In the acrylate segment, the mass percent content of hydroxyethyl methacrylate is 30%.
[0050] In the second step, add 1mol of toluene diisocyanate (TDI) and 18g of solvent propylene glycol methyl ether acetate into a 1000mL three-necked flask, heat to 68°C, and add 0.5% of dibutyltin dilaurate to 0.5mol of 2,3-dihydroxypropionic acid, gradually added to the toluene diisocyanate (TDI) solution, continued to react for 2.5 hours after the drop, added 0.4% p-hydroxyanisole to 1mol of hydroxyethyl me...
Embodiment 2
[0055] The first step, in 500mL there-necked flask, add 20g solvent ethylene glycol butyl ether acetate, 40g butyl acrylate, 60g methyl methacrylate, 40 butyl methacrylate, 40g hydroxyethyl acrylate, 20g acrylonitrile, stir Evenly, add 1.0% of the catalyst benzoyl peroxide tert-butyl peroxide, stir and heat to 66°C, and react for 3 hours to obtain a polyacrylate segment with a hydroxyl group in the side chain ①, polyacrylate In the chain segment, the mass percent content of hydroxyethyl acrylate is 20%.
[0056] In the second step, add 1mol of dicyclohexylmethane diisocyanate (HMDI), 16g of solvent ethylene glycol butyl ether acetate into a 1000mL three-necked flask, heat to 66°C, and dibutyltin dilaurate by 0.4% of the total mass Add to 0.5mol of 2,2-dimethylolbutyric acid, gradually add to dicyclohexylmethane diisocyanate (HMDI) solution, continue to react for 2.5h after dripping, add 0.6% to 1mol of hydroxyethyl acrylate Add p-hydroxyanisole to the above reaction system, r...
Embodiment 3
[0061] The first step, add 20g solvent propylene glycol diacetate, 30g butyl methacrylate, 40g methyl acrylate, 40g hydroxypropyl methacrylate, 40g hydroxypropyl acrylate, 20g hydroxyethyl methacrylate in a 500mL three-necked flask , 10g styrene, 20g acrylamide, stir evenly, add benzoyl peroxide as a catalyst accounting for 0.8% of the total mass of the monomer, heat to 73°C while stirring, and react for 2.5h to obtain polyacrylate with hydroxyl groups in the side chain Segment ①, in the polyacrylate segment, the total mass percentage content of hydroxypropyl methacrylate, hydroxypropyl acrylate and hydroxyethyl methacrylate is 50%.
[0062] In the second step, add 1mol of phenylmethane diisocyanate (MDI) and 15g of solvent propylene glycol diacetate to a 1000mL three-necked flask, heat to 65°C, and add 0.6% of dibutyltin dilaurate to 0.5mol 2,4-dihydroxybutyric acid, gradually added to the phenylmethane diisocyanate (MDI) solution, continued to react for 2.5 h after the drop,...
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