Synthetic resin emulsion, easily water-swellable pressure-sensitive adhesive compositions containing the same and process for production of the emulsion
View Patent ↗There is provided a synthetic resin emulsion comprising polymer particles having a core/shell structure, wherein the shell comprises a copolymer of an unsaturated carboxylic acid and a hydrophilic comonomer, the core comprises a copolymer of a monomer mixture comprising a radically polymerizable main monomer and a radically polymerizable functional monomer, and the monomers constituting the monomer mixture are selected so that the glass transition point (Tg) of the copolymer produced by polymerization is −20° C. or below, and the synthetic resin emulsion has been produced by adding the monomer mixture for core formation and a pH adjustor to an aqueous copolymer solution, which has not been neutralized, produced by polymerizing the unsaturated carboxylic acid and the hydrophilic comonomer in an aqueous medium, and allowing a polymerization reaction to proceed. The use of the synthetic resin emulsion can provide a pressure-sensitive adhesive which has excellent adhesive properties such as adhesive strength, cohesive force and tackiness and can be easily swollen with water without any treatment with an alkali.
1. A process for producing a synthetic resin emulsion comprising polymer particles having a core and shell structure, said shell including a copolymer of an unsaturated carboxylic acid and a hydrophilic comonomer, said core comprising a copolymer of a core monomer mixture including a radically polymerizable main monomer and a radically polymerizable functional monomer, said process comprising the steps of: providing an unsaturated carboxylic acid and a hydrophilic comonomer; polymerizing said unsaturated carboxylic acid and a hydrophilic comonomer in an aqueous medium to form an aqueous copolymer solution; and adding said core monomer mixture for core formation when the aqueous copolymer solution is in an unneutralized state to form a reaction mixture; concurrently emulsion polymerizing the reaction mixture and adding a pH adjuster to the aqueous copolymer solution, to form a synthetic resin emulsion, wherein said monomer mixture comprises monomers selected so that the glass transition point (Tg) of the core copolymer produced by polymerization is −20° C. or below.
2. The process for producing a synthetic resin emulsion according to claim 1 , wherein, said core monomer mixture is added as an emulsion monomer solution that is prepared with an emulsifier.
3. A method for making a pressure-sensitive adhesive comprising the step of adding a synthetic resin emulsion that is prepared according to claim 1 to the pressure sensitive adhesive during formation of the pressure sensitive adhesive.
4. A process for producing a synthetic resin emulsion suitable for use in a pressure sensitive adhesive, wherein said emulsion has polymer particles with a core/shell structure, said process comprising the steps of:
a) polymerizing an unsaturated carboxylic acid monomer and a hydrophilic comonomer in an aqueous medium to produce a shell copolymer for the shell structure of the emulsion particles, where the copolymer is in solution in the aqueous medium;
b) combining core monomers with the aqueous medium to form a reaction mixture, and emulsion polymerizing the reaction mixture while concurrently at least partially neutralizing the shell copolymer in the aqueous medium by addition of a pH adjusting agent, to provide a synthetic resin emulsion having a core/shell structure which exhibits swelling in water without any alkali treatment, wherein said core monomers comprise radically polymerizable main monomer and a radically polymerizable functional monomer in the aqueous medium, and wherein said core monomers are selected such that the core polymer has a Tg of less than −20° C.
5. The process according to claim 4 , wherein shell copolymer is in an unneutralized state when the core monomers and pH adjusting agent are added to the aqueous medium.
6. The process according to claim 4 , wherein the core monomers are polymerized in the reaction mixture, while the pH of the reaction mixture is held at less than 7.