C09J2477/00

CUTTING PLOTTER FILM WITH ANTI-COUNTERFEIT EFFECT
20180320030 · 2018-11-08 ·

A cutting plotter film with anti-counterfeit effect includes: a heat-resistant layer; a stripe-embossed layer having releasing property and bonded on the heat-resistant layer, the stripe-embossed layer being formed with a stripe-embossed surface; a character film layer disposed on the stripe-embossed surface of the stripe-embossed layer, having a contact surface in contact with the stripe-embossed surface, the contact surface being formed with anti-counterfeit stripes; and a heat bonding layer disposed on the character film layer. Figures/characters are cut/engraved on the character film layer and the heat bonding layer. The cutting plotter film is placed on a product and heated to transfer and adhere the figures/characters onto the product.

Robust interface bonding with B-staged thermoplastic polyimide adhesive

Thermoplastic Polyimide (TPI) polymer adhesive coated laminating films in which the TPI coating is under cured or B-staged as well as the process for preparing the films and the use thereof is disclosed.

VENEER SHEET AND METHOD OF MANUFACTURING SAME
20180304581 · 2018-10-25 ·

A veneer sheet includes a veneer formed from a thin sheet of wood, a reinforcing material reinforcing the veneer, and an adhesive layer including the reinforcing material and a first adhesive layer and a second adhesive layer present on both sides of the reinforcing material, the first and second adhesive layers being layers of hot melt adhesive. The adhesive layer is integral with the veneer.

Adhesive articles

This disclosure relates generally to adhesive articles and particularly to adhesive articles comprising a reversible adhesive layer and a non-reversible adhesive layer. The adhesive article may further comprise a backing material. The adhesive article may further comprise a dressing material. Such adhesive articles may be particularly suitable for treatment of damaged sensitive tissue, for example wounds formed on a fragile skin.

Slide fastener reinforcement tape

A slide fastener reinforcement tape is provided that exhibits high performance launderability and peel strength between a reinforcement tape and a fastener tape, in environments harsher than those set forth in the prior art. Specifically, provided is a slide fastener reinforcement tape formed by laminating an adhesive layer on the back surface of a transparent elastomer film, wherein the slide fastener reinforcement tape is characterized in that the adhesive layer is a polyester-based hot-melt adhesive, a two-part type curable adhesive or a polyamide-based hot-melt adhesive, and the melting point of the adhesive layer is higher than 120 C. and no more than 160 C. and the melt viscosity at 200 C. is higher than 2000 poise and no more than 5500 poise.

Adhesive composition, and production method thereof

Provided is an adhesive composition, an adhesive product, and a method of preparing an adhesive composition. The adhesive composition including lysine, oxaloacetic acid, and water, wherein the lysine and the oxaloacetic acid are present in the form of an aqueous salt solution and do not form precipitates in the aqueous solution.

HEAT RADIATING SHEET
20180213681 · 2018-07-26 · ·

Provided is a flexible heat radiating sheet with high thermal conductivity. The heat radiating sheet includes a resin material and a heat radiating member that extends in the planar direction and has a required thickness. The heat radiating member is bent such that in portions of a thin plate member between adjacent slit rows, projecting portions and recess portions are alternately repeated in the X-axis direction, and a projecting portion and a recess portion that are adjacent in the Y-axis direction are located facing each other. The heat radiating member is entirely buried in the resin material excluding apexes of the projecting portions and the recess portions.

METHOD FOR FORMING A BOND BETWEEN TWO SUBSTRATES OF A DEVICE; DEVICE OBTAINABLE BY THE METHOD; A MICROFLUIDIC DEVICE; AND USE OF THE DEVICE

A method for forming a bond between substrates of a device includes providing first and second substrates, providing a first functionalized polyelectrolyte polymer (A) and providing a second functionalized polyelectrolyte polymer (B). Forming a functionalized surface on an exposed surface of the first substrate having the first functionalized polyelectrolyte polymer (A) attached thereto, forming a functionalized surface on an exposed surface of the second substrate having the second functionalized polyelectrolyte polymer (B) attached thereto, contacting at least a part of the functionalized surface of the first substrate onto at least a part of the functionalized surface of the second substrate thereby forming a contact area between the first functionalized polyelectrolyte polymer (A) and the second functionalized polyelectrolyte polymer (B), and forming a covalent bond between a first coupling moiety (A1) and a second coupling moiety (B1) in the contact area between the first and second substrates for binding the substrates.

HIGH THERMALLY CONDUCTIVE LOW PRESSURE MOULDABLE HOTMELT

The present invention relates to hotmelt adhesives with improved thermal conductivity, uses thereof. The adhesive composition of the present invention comprise at least one (co)polymer binder and at least one filler, as defined herein. The thermally conductive hotmelt adhesive composition according to the present invention is also intended to encapsulate heat generating devices such as printed circuit boards to provide better heat dissipation.

Double-sided adhesive tape having a first outer impact-adhesive side and a second outer side that can be heat activated

A double-sided adhesive tape having a first outer impact-adhesive side and a second outer side that can be heat activated, comprising an at least two-layer product structure comprising the layers A and B. Layer A is an impact-adhesive layer chemically cross-linked by means of thermal initiation or an impact-adhesive carrier layer chemically cross-linked by means of thermal initiation. Layer B is a layer on the basis of a thermoplastic plastic. Layer A and layer B are in direct contact with each other, and the surface of layer B that is in direct contact with layer A has been corona- or plasma-pretreated. The double-sided adhesive tape is characterized in that the corona or plasma pretreatment is performed in an atmosphere comprising nitrogen, carbon dioxide, or a noble gas or a mixture of at least two of said gases.