B41M3/12

RELEASE MEMBER-INTEGRATED IMAGE FORMING SHEET, RELEASE MEMBER-INTEGRATED IMAGE SHEET, IMAGE SHEET, METHOD FOR MANUFACTURING IMAGE SHEET, DECORATIVE PRODUCT, AND METHOD FOR MANUFACTURING DECORATIVE PRODUCT

A release member-integrated image forming sheet that can form a high quality image and has good manufacturing suitability, a release member-integrated image sheet, an image sheet, a method for manufacturing an image sheet, a decorative product having a high quality image, and a method for manufacturing a decorative product that can form a high quality image and has good manufacturing suitability. An image forming sheet is integrated with a release member, the image forming sheet can be separated from the release member, the image forming sheet includes an image layer before image formation, a stable peeling force when the image forming sheet is separated from the release member under conditions of a temperature of 25° C. and an angle of 30° is 1,000 mN/cm or less, and the dynamic coefficient of friction between the front and back surfaces of the release member is 0.3 or more and 0.9 or less.

RELEASE MEMBER-INTEGRATED IMAGE FORMING SHEET, RELEASE MEMBER-INTEGRATED IMAGE SHEET, IMAGE SHEET, METHOD FOR MANUFACTURING IMAGE SHEET, DECORATIVE PRODUCT, AND METHOD FOR MANUFACTURING DECORATIVE PRODUCT

A release member-integrated image forming sheet that can form a high quality image and has good manufacturing suitability, a release member-integrated image sheet, an image sheet, a method for manufacturing an image sheet, a decorative product having a high quality image, and a method for manufacturing a decorative product that can form a high quality image and has good manufacturing suitability. An image forming sheet is integrated with a release member, the image forming sheet can be separated from the release member, the image forming sheet includes an image layer before image formation, a stable peeling force when the image forming sheet is separated from the release member under conditions of a temperature of 25° C. and an angle of 30° is 1,000 mN/cm or less, and the dynamic coefficient of friction between the front and back surfaces of the release member is 0.3 or more and 0.9 or less.

Method for producing a molded part
11679614 · 2023-06-20 · ·

A method of producing a molded part comprising a decorative coating with a molded part front side designed as visible side and a rear side opposing the front side and a substrate arranged on the rear side of the decorative coating, wherein the decorative coating comprises (or is formed from) a decorative layer, wherein the method comprises: providing the decorative layer or decorative coating, attaching the substrate to the rear side of the decorative layer or coating, applying a resist lacquer to the front side of the decorative layer by means of a digital printing machine, the resist lacquer being applied in sections to the front side of the decorative layer to form a pattern or symbol or a negative of a pattern or symbol such that lacquer-free surface areas and surface areas covered with resist lacquer are created on the front side of the decorative layer.

Method for producing a molded part
11679614 · 2023-06-20 · ·

A method of producing a molded part comprising a decorative coating with a molded part front side designed as visible side and a rear side opposing the front side and a substrate arranged on the rear side of the decorative coating, wherein the decorative coating comprises (or is formed from) a decorative layer, wherein the method comprises: providing the decorative layer or decorative coating, attaching the substrate to the rear side of the decorative layer or coating, applying a resist lacquer to the front side of the decorative layer by means of a digital printing machine, the resist lacquer being applied in sections to the front side of the decorative layer to form a pattern or symbol or a negative of a pattern or symbol such that lacquer-free surface areas and surface areas covered with resist lacquer are created on the front side of the decorative layer.

TEXTILE PRINTING PAPER FOR USE IN PAPER PRINTING METHOD
20170350070 · 2017-12-07 ·

Provided is a textile printing paper for use in a paper printing method, the textile printing paper being excellent in color development on a printing substrate, transferred unevenness suppressing property and strike-through resistance while satisfying the requirements for adhesiveness of a printed paper to a printing substrate. The textile printing paper comprises a base paper and a glue layer on a surface of the base paper, the base paper having a sizing degree of 10 g/m.sup.2 to 40 g/m.sup.2 as measured according to JIS P 8140:1998.

TEXTILE PRINTING PAPER FOR USE IN PAPER PRINTING METHOD
20170350070 · 2017-12-07 ·

Provided is a textile printing paper for use in a paper printing method, the textile printing paper being excellent in color development on a printing substrate, transferred unevenness suppressing property and strike-through resistance while satisfying the requirements for adhesiveness of a printed paper to a printing substrate. The textile printing paper comprises a base paper and a glue layer on a surface of the base paper, the base paper having a sizing degree of 10 g/m.sup.2 to 40 g/m.sup.2 as measured according to JIS P 8140:1998.

PROCESS FOR CREATING A SUBLIMATED PRINTED HEAT-SEALABLE APPLIQUE
20170326857 · 2017-11-16 ·

A process for producing a colorfast thermal appliqué using a polyester knit fabric blank, dye-sublimation printing a graphic image on the fabric blank, and laminating a triple-layer polyurethane adhesive on another side of the printed fabric blank. The triple-layer adhesive comprises a first layer of clear ink resistant polyurethane adhesive followed by a white-pigmented ink resistant polyurethane adhesive and a third clear layer of ink-resistant polyurethane adhesive. The first layer of the triple-layer adhesive is fused under combined temperature and pressure to the polyester blank until said first and second layers impregnates into said fabric blank. The fabric blank is then cut into a discrete finished appliqué that does not substantially change the physical and visual characteristics of a performance fabric substrate to which the appliqué is applied.

PROCESS FOR CREATING A SUBLIMATED PRINTED HEAT-SEALABLE APPLIQUE
20170326857 · 2017-11-16 ·

A process for producing a colorfast thermal appliqué using a polyester knit fabric blank, dye-sublimation printing a graphic image on the fabric blank, and laminating a triple-layer polyurethane adhesive on another side of the printed fabric blank. The triple-layer adhesive comprises a first layer of clear ink resistant polyurethane adhesive followed by a white-pigmented ink resistant polyurethane adhesive and a third clear layer of ink-resistant polyurethane adhesive. The first layer of the triple-layer adhesive is fused under combined temperature and pressure to the polyester blank until said first and second layers impregnates into said fabric blank. The fabric blank is then cut into a discrete finished appliqué that does not substantially change the physical and visual characteristics of a performance fabric substrate to which the appliqué is applied.

Digitally printed heat transfer label

A digitally printed heat transfer label and method of manufacture is disclosed. The heat transfer label and method of manufacture provides a more efficient process with less waste, as well as prevents halos. The method comprises adding adhesive powder to a digital image printed on a substrate to produce a high stretch, multi-color photographic quality label for the apparel industry.

Digitally printed heat transfer label

A digitally printed heat transfer label and method of manufacture is disclosed. The heat transfer label and method of manufacture provides a more efficient process with less waste, as well as prevents halos. The method comprises adding adhesive powder to a digital image printed on a substrate to produce a high stretch, multi-color photographic quality label for the apparel industry.