C09D175/14

Coating Composition for Polyurethane Foam and Polyurethane Foam Using Same
20220340729 · 2022-10-27 · ·

A coating agent composition for polyurethane foam is provided. The coating agent may not only exhibit adhesive properties suitable for an automated process for producing a battery pack, but also has a uniform surface and has excellent durability and reliability in a severe environment. Polyurethane foam using the coating agent composition is also provided. Specifically, coating agent composition for polyurethane foam includes a (meth)acrylate-based monomer, an urethane acrylate, a photoinitiator, and inorganic fine particles, wherein a content of the inorganic fine particles is 100 parts by weight to 500 parts by weight based on 100 parts by weight of the photoinitiator.

Coating Composition for Polyurethane Foam and Polyurethane Foam Using Same
20220340729 · 2022-10-27 · ·

A coating agent composition for polyurethane foam is provided. The coating agent may not only exhibit adhesive properties suitable for an automated process for producing a battery pack, but also has a uniform surface and has excellent durability and reliability in a severe environment. Polyurethane foam using the coating agent composition is also provided. Specifically, coating agent composition for polyurethane foam includes a (meth)acrylate-based monomer, an urethane acrylate, a photoinitiator, and inorganic fine particles, wherein a content of the inorganic fine particles is 100 parts by weight to 500 parts by weight based on 100 parts by weight of the photoinitiator.

RADIATION CURABLE TWO-COMPONENT AQUEOUS COATING COMPOSITION, AND COATED ARTICLE MADE THEREFROM
20230082347 · 2023-03-16 ·

The present application relates to a radiation curable two-component aqueous coating composition and coated article made therefrom. The radiation-curable two-component aqueous coating composition comprises Component A, comprising at least one radiation-curable hydroxy-functional polymer, at least one photoinitiator and at least one organic matting agent; and Component B, comprising at least one polyisocyanate; wherein the organic matting agent is an acrylics polymer in the form of a dry powder, and the dry powder has a particle size of in the range of 4-8 microns, as measured by laser diffraction particle size analyzer using ISO 13320 (2009) (the Malvern method); and wherein when the radiation curable two-component aqueous coating composition is cured to form a coating, the coating has a gloss of no higher than 50 at 60° using ASTM D523.

RADIATION CURABLE TWO-COMPONENT AQUEOUS COATING COMPOSITION, AND COATED ARTICLE MADE THEREFROM
20230082347 · 2023-03-16 ·

The present application relates to a radiation curable two-component aqueous coating composition and coated article made therefrom. The radiation-curable two-component aqueous coating composition comprises Component A, comprising at least one radiation-curable hydroxy-functional polymer, at least one photoinitiator and at least one organic matting agent; and Component B, comprising at least one polyisocyanate; wherein the organic matting agent is an acrylics polymer in the form of a dry powder, and the dry powder has a particle size of in the range of 4-8 microns, as measured by laser diffraction particle size analyzer using ISO 13320 (2009) (the Malvern method); and wherein when the radiation curable two-component aqueous coating composition is cured to form a coating, the coating has a gloss of no higher than 50 at 60° using ASTM D523.

WATER-BASED COMPOSITION FOR BARRIER AND LAMINATED MATERIAL

A water-based composition for barrier containing a urethane resin (A) which is comprising a polyol (a1), a polyisocyanate (a2) and a chain extender (a3) as essential reaction components, and at least one wax (B) selected from the group consisting of a paraffin, a carnauba and an alkyl ketene dimer, and further a content ratio between the component (A) and the component (B) in terms of the non-volatile content weight is (A)/(B)=25/75 to 95/5.

WATER-BASED COMPOSITION FOR BARRIER AND LAMINATED MATERIAL

A water-based composition for barrier containing a urethane resin (A) which is comprising a polyol (a1), a polyisocyanate (a2) and a chain extender (a3) as essential reaction components, and at least one wax (B) selected from the group consisting of a paraffin, a carnauba and an alkyl ketene dimer, and further a content ratio between the component (A) and the component (B) in terms of the non-volatile content weight is (A)/(B)=25/75 to 95/5.

LOW TEMPERATURE CURE COATING COMPOSITION

A coating composition includes: an aqueous medium; a first polymer comprising first core-shell particles dispersed in the aqueous medium, where the first core-shell particles include (i) keto and/or aldo functional groups, (ii) a polymeric shell including carboxylic acid functional groups and urethane and/or urea linkages, and (iii) a polymeric core at least partially encapsulated by the polymeric shell, where the polymeric shell and/or the polymeric core include the keto and/or aldo functional groups; a second polymer dispersed in the aqueous medium, the second polymer including carboxylic acid functional groups and hydroxyl functional groups; a first crosslinker including a polyhydrazide reactive with the first core-shell particles; and a second crosslinker reactive with the first core-shell particles and/or the second polymer, where the polymeric core of the first core-shell particles are covalently bonded to at least a portion of the corresponding polymeric shell.

LOW TEMPERATURE CURE COATING COMPOSITION

A coating composition includes: an aqueous medium; a first polymer comprising first core-shell particles dispersed in the aqueous medium, where the first core-shell particles include (i) keto and/or aldo functional groups, (ii) a polymeric shell including carboxylic acid functional groups and urethane and/or urea linkages, and (iii) a polymeric core at least partially encapsulated by the polymeric shell, where the polymeric shell and/or the polymeric core include the keto and/or aldo functional groups; a second polymer dispersed in the aqueous medium, the second polymer including carboxylic acid functional groups and hydroxyl functional groups; a first crosslinker including a polyhydrazide reactive with the first core-shell particles; and a second crosslinker reactive with the first core-shell particles and/or the second polymer, where the polymeric core of the first core-shell particles are covalently bonded to at least a portion of the corresponding polymeric shell.

CURABLE FILM-FORMING COMPOSITIONS COMPRISING CATALYST ASSOCIATED WITH A CARRIER AND METHODS FOR COATING A SUBSTRATE

Methods of coating a substrate are disclosed. The methods comprise applying shear force to a coating composition either before or during application of the coating composition to the substrate. The coating composition comprises a water-borne or solvent-borne film-forming resin and a catalyst associated with a carrier, wherein at least some of the catalyst can be released from the carrier upon application of the shear force. Also provided are coated articles prepared by the methods.

CURABLE FILM-FORMING COMPOSITIONS COMPRISING CATALYST ASSOCIATED WITH A CARRIER AND METHODS FOR COATING A SUBSTRATE

Methods of coating a substrate are disclosed. The methods comprise applying shear force to a coating composition either before or during application of the coating composition to the substrate. The coating composition comprises a water-borne or solvent-borne film-forming resin and a catalyst associated with a carrier, wherein at least some of the catalyst can be released from the carrier upon application of the shear force. Also provided are coated articles prepared by the methods.