C08F224/00

INKJET INK
20220089893 · 2022-03-24 ·

Inkjet ink disclosed herein, usable for at least a transfer sheet suitable for an inorganic substrate, contains an inorganic solid content and a photocurable monomer component. The monomer component contains at least a monofunctional acrylate-based monomer, a monofunctional N-vinyl compound monomer, and a polyfunctional vinylether-based monomer. With respect to 100% by mass as the total weight of the monomer component, the monofunctional acrylate-based monomer is contained at a weight ratio of 40% by mass to 96% by mass, the monofunctional N-vinyl compound monomer is contained at a weight ratio of 2% by mass to 20% by mass, and the polyfunctional vinylether-based monomer is contained at a weight ratio of 2% by mass to 40% by mass.

INKJET INK
20220089893 · 2022-03-24 ·

Inkjet ink disclosed herein, usable for at least a transfer sheet suitable for an inorganic substrate, contains an inorganic solid content and a photocurable monomer component. The monomer component contains at least a monofunctional acrylate-based monomer, a monofunctional N-vinyl compound monomer, and a polyfunctional vinylether-based monomer. With respect to 100% by mass as the total weight of the monomer component, the monofunctional acrylate-based monomer is contained at a weight ratio of 40% by mass to 96% by mass, the monofunctional N-vinyl compound monomer is contained at a weight ratio of 2% by mass to 20% by mass, and the polyfunctional vinylether-based monomer is contained at a weight ratio of 2% by mass to 40% by mass.

COMPOSITION FOR STRUCTURAL ADHESIVES
20210332266 · 2021-10-28 ·

The invention relates to an acrylic structural adhesive composition containing (meth)acrylate monomers at least 20% of which is a mixture of 1,3-Dioxan-5-yl methacrylate and 1,3-Dioxolan-4-ylmethyl methacrylate, as well as block copolymers, elastomers and particles formed of a thermoplastic shell and an elastomeric core.

COMPOSITION FOR STRUCTURAL ADHESIVES
20210332266 · 2021-10-28 ·

The invention relates to an acrylic structural adhesive composition containing (meth)acrylate monomers at least 20% of which is a mixture of 1,3-Dioxan-5-yl methacrylate and 1,3-Dioxolan-4-ylmethyl methacrylate, as well as block copolymers, elastomers and particles formed of a thermoplastic shell and an elastomeric core.

COMPOSITE FUNCTIONAL RESIN, PREPARATION METHOD THEREFOR AND USE THEREOF

Disclosed is a composite functional resin, having the basic structure of Formula (I) and/or Formula (II), wherein A.sub.X is a quaternary ammonium group. In view of the problems that the existing resins have poor anti-interference ability, and poor ability to remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate and arsenate in water while sterilizing, the composite functional resin of the present invention has the ability to efficiently remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate, and arsenate in water, and has the advantages of efficient sterilization and high anti-interference ability. The composite functional resin can be applied in sterilization and water treatment.

##STR00001##

COMPOSITE FUNCTIONAL RESIN, PREPARATION METHOD THEREFOR AND USE THEREOF

Disclosed is a composite functional resin, having the basic structure of Formula (I) and/or Formula (II), wherein A.sub.X is a quaternary ammonium group. In view of the problems that the existing resins have poor anti-interference ability, and poor ability to remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate and arsenate in water while sterilizing, the composite functional resin of the present invention has the ability to efficiently remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate, and arsenate in water, and has the advantages of efficient sterilization and high anti-interference ability. The composite functional resin can be applied in sterilization and water treatment.

##STR00001##

COMPOSITE FUNCTIONAL RESIN, PREPARATION METHOD THEREFOR AND USE THEREOF

Disclosed is a composite functional resin, having the basic structure of Formula (I) and/or Formula (II), wherein A.sub.X is a quaternary ammonium group. In view of the problems that the existing resins have poor anti-interference ability, and poor ability to remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate and arsenate in water while sterilizing, the composite functional resin of the present invention has the ability to efficiently remove dissolved organic matter, disinfection by-product precursors, and anions such as nitrate, sulfate, phosphate, and arsenate in water, and has the advantages of efficient sterilization and high anti-interference ability. The composite functional resin can be applied in sterilization and water treatment.

##STR00001##

POLYOXYALKYLENE POLYMER AND CURABLE COMPOSITION

A polyoxyalkylene polymer including a main chain structure of a polyoxyalkylene and terminal structures bonded to ends of the main chain structure is provided. The terminal structures include a hydrolyzable silyl group and further include a terminal olefin group and/or an internal olefin group. The total number of the hydrolyzable silyl, terminal olefin, and internal olefin groups is more than 1.0 on average per terminal structure, and the ratio of the number of moles of the hydrolyzable silyl groups to the total number of moles of the hydrolyzable silyl, terminal olefin, and internal olefin groups is from 0.3 to 0.7.

POLYOXYALKYLENE POLYMER AND CURABLE COMPOSITION

A polyoxyalkylene polymer including a main chain structure of a polyoxyalkylene and terminal structures bonded to ends of the main chain structure is provided. The terminal structures include a hydrolyzable silyl group and further include a terminal olefin group and/or an internal olefin group. The total number of the hydrolyzable silyl, terminal olefin, and internal olefin groups is more than 1.0 on average per terminal structure, and the ratio of the number of moles of the hydrolyzable silyl groups to the total number of moles of the hydrolyzable silyl, terminal olefin, and internal olefin groups is from 0.3 to 0.7.

COATING AGENT COMPOSITION AND LAMINATED FILM
20210162724 · 2021-06-03 ·

It is an object of the present invention to provide a coating agent composition from which a cured layer superior in water scale resistance and chemical resistance as well as in processability can be obtained. A cured film superior in water scale resistance and chemical resistance as well as in processability can be obtained from a coating agent composition for a laminated film to protect an exterior curved surface of a vehicle, including a component (A1): a (meth)acrylic resin having a hydroxyl group, and a component (B): a polyfunctional isocyanate compound, wherein the component (A1) has an alicyclic structure (a11) and a structure (a12) selected from the group consisting of polylactone, polycarbonate, polyester and polyether, and the component (A1) has a hydroxyl value of 50 to 150 mg KOH/g.