Patent classifications
C09D147/00
POLYMER SYSTEM COATING FOR ELASTOMERIC RUBBER GLOVES
Provided are various gloves and protective articles with improved donning characteristics. The glove comprises an interior surface, and a polymer system coating the interior surface. The polymer system comprises one or more first polymers, each including an average particle size between 100 nanometers (nm) to 400 nm. The polymer system further comprises one or more second polymers, each including an average particle size in excess of 500 nm. The one or more first polymers may comprise a combination of one or more polymers including: butadiene based polymer and copolymer latices, isoprene based polymer and copolymer latices, copolymer latices prepared from styrene and acrylic monomers, and polyurethane copolymers. The one or more second polymers may include vinyl acetate polymers. The glove may be an elastomeric rubber glove coated with the polymer system in an amount between 0.0004 grams and 0.0016 grams on a dry basis.
POLYMER SYSTEM COATING FOR ELASTOMERIC RUBBER GLOVES
Provided are various gloves and protective articles with improved donning characteristics. The glove comprises an interior surface, and a polymer system coating the interior surface. The polymer system comprises one or more first polymers, each including an average particle size between 100 nanometers (nm) to 400 nm. The polymer system further comprises one or more second polymers, each including an average particle size in excess of 500 nm. The one or more first polymers may comprise a combination of one or more polymers including: butadiene based polymer and copolymer latices, isoprene based polymer and copolymer latices, copolymer latices prepared from styrene and acrylic monomers, and polyurethane copolymers. The one or more second polymers may include vinyl acetate polymers. The glove may be an elastomeric rubber glove coated with the polymer system in an amount between 0.0004 grams and 0.0016 grams on a dry basis.
MULTIFUNCTIONAL WATER-BORNE HIGH SOLIDS TILE PAINT
Described herein is a coated building panel that comprises a side surface that is textured and exhibits a white and/or color. The building panel comprising an upper surface opposite a lower surface and a side surface extending between the upper surface and the lower surface, a coating applied to the side surface, the coating comprising an inorganic particle having a disk shape and an ionic dispersant comprising an ionic group that are present on a repeating unit and the ionic dispersant comprising at least two of the repeating units.
MULTIFUNCTIONAL WATER-BORNE HIGH SOLIDS TILE PAINT
Described herein is a coated building panel that comprises a side surface that is textured and exhibits a white and/or color. The building panel comprising an upper surface opposite a lower surface and a side surface extending between the upper surface and the lower surface, a coating applied to the side surface, the coating comprising an inorganic particle having a disk shape and an ionic dispersant comprising an ionic group that are present on a repeating unit and the ionic dispersant comprising at least two of the repeating units.
UV-curable compositions comprising cleavage type photoinitiators
The present invention is drawn to UV-curable ink and coating compositions comprising cleavage type photoinitiators and acids. The acids may be inorganic or organic acids, or acids generated by a photoacid generator during UV-cure. Incorporation of the acids into the UV-curable ink and coating compositions results in a reduction of migratable photodecomposition products that are produced by cleavage type photoinitiators during UV-cure. The ink and coating compositions are particularly useful for use in applications that require low migration of low molecular weight materials, such as, for example, food packaging.
UV-curable compositions comprising cleavage type photoinitiators
The present invention is drawn to UV-curable ink and coating compositions comprising cleavage type photoinitiators and acids. The acids may be inorganic or organic acids, or acids generated by a photoacid generator during UV-cure. Incorporation of the acids into the UV-curable ink and coating compositions results in a reduction of migratable photodecomposition products that are produced by cleavage type photoinitiators during UV-cure. The ink and coating compositions are particularly useful for use in applications that require low migration of low molecular weight materials, such as, for example, food packaging.
SURFACE TREATMENT LIQUID AND HYDROPHILIZING TREATMENT METHOD
A surface treatment liquid capable of forming a hydrophilic resinous coating film adhering well to a surface of an object to be surface-treated and providing a surface treatment effect that does not decrease over time, even when the surface-treated article is exposed to a variety of agents, and a surface treatment method using the surface treatment liquid is provided.
A surface treatment liquid including a polymerizable compound (A), a thermal polymerization initiator (B), and a solvent (S), in which the polymerizable compound (A) includes a betaine monomer (a1) having a group including an ethylenic unsaturated double bond, an anionic group, and a cationic group, an unsaturated group-containing silicon compound (a2) having a group including an ethylenic unsaturated double bond, and a hydrolyzable silyl group, and/or a polar polymerizable compound (a3) having an ethylenic unsaturated double bond, and a polar group selected from amino group, carboxylic group, mercapto group, hydroxy group, and cyano group is used.
SURFACE TREATMENT LIQUID AND HYDROPHILIZING TREATMENT METHOD
A surface treatment liquid capable of forming a hydrophilic resinous coating film adhering well to a surface of an object to be surface-treated and providing a surface treatment effect that does not decrease over time, even when the surface-treated article is exposed to a variety of agents, and a surface treatment method using the surface treatment liquid is provided.
A surface treatment liquid including a polymerizable compound (A), a thermal polymerization initiator (B), and a solvent (S), in which the polymerizable compound (A) includes a betaine monomer (a1) having a group including an ethylenic unsaturated double bond, an anionic group, and a cationic group, an unsaturated group-containing silicon compound (a2) having a group including an ethylenic unsaturated double bond, and a hydrolyzable silyl group, and/or a polar polymerizable compound (a3) having an ethylenic unsaturated double bond, and a polar group selected from amino group, carboxylic group, mercapto group, hydroxy group, and cyano group is used.
FUNCTIONAL MATERIAL AND METHOD FOR MANUFACTURING THE SAME
The present invention relates to a material having various functions such as antimicrobial function or waterproof function, as well as a method and an apparatus for manufacturing the same. The method for manufacturing a functional material according to the present invention includes coating a surface of conductive or non-conductive material with an electrically charged microfine material having a size of nano- or micro-units, thereby imparting functionality to the material simultaneously with maintaining intrinsic properties thereof.
In addition, the method for manufacturing a functional material, according to the present invention, had advantages in which: repeating a process of coating the surface of the conductive or non-conductive material with a functional substance can impart a plurality of desired functions to the material, in addition, a thickness of the functional material may be easily adjusted, and a large area/large quantity may be produced by a simplified process using a general material in a short period.
FUNCTIONAL MATERIAL AND METHOD FOR MANUFACTURING THE SAME
The present invention relates to a material having various functions such as antimicrobial function or waterproof function, as well as a method and an apparatus for manufacturing the same. The method for manufacturing a functional material according to the present invention includes coating a surface of conductive or non-conductive material with an electrically charged microfine material having a size of nano- or micro-units, thereby imparting functionality to the material simultaneously with maintaining intrinsic properties thereof.
In addition, the method for manufacturing a functional material, according to the present invention, had advantages in which: repeating a process of coating the surface of the conductive or non-conductive material with a functional substance can impart a plurality of desired functions to the material, in addition, a thickness of the functional material may be easily adjusted, and a large area/large quantity may be produced by a simplified process using a general material in a short period.