C09J2301/20

PRESSURE-SENSITIVE ADHESIVE SHEET

Provided is a PSA sheet that can be separated well from the adherend after a curing treatment and that can prevent adhesive transfer during separation even when exposed to a high temperature. Provided is a PSA sheet having a PSA layer. The PSA layer of the PSA sheet comprises a polymer having a glass transition temperature of −63° C. or higher. The PSA sheet has an adhesive strength reduction rate 17% or higher after a heating/curing treatment.

Bonding film, and light-transmitting laminate including same
11548262 · 2023-01-10 · ·

Embodiment relates to film for bonding, and a light-transmitting laminate including the same and the like, a film for bonding comprising an embossed surface, wherein the embossed surface has an A2/A1 value of 1 or less are disclosed. A film for bonding have improved in deairing stability during formation of a light transmitting laminate, an edge sealing characteristic, and the like by controlling characteristics of a embossed surface.

Adhesive having increased bonding strength

Articles having a thermal imprinted adhesive on a substrate of a plurality of certain conicals have improved bonding strength.

Adhesive sheet and method of applying adhesive sheet to rough surface

An adhesive sheet of an embodiment of the present disclosure is an adhesive sheet including: a rigid resin film having a thickness of 80 micrometers to 500 micrometers, and a first pressure sensitive adhesive layer being disposed on or above a surface of the rigid resin film, wherein the first pressure sensitive adhesive layer includes elastic resin microspheres having a volume average particle diameter of 110 micrometers or greater and a tacky binder, and the first pressure sensitive adhesive layer has an uneven surface due to the presence of the microspheres.

Glove with dry-adhesive and dry-non-adhesive micro-wedges

A glove with gecko-inspired dry adhesives is provided to greatly reduce the required grasp force on heavy, smooth items. The orientation of the gecko adhesives is designed to increase shear forces between the glove and the object when lifting and manipulating. The invention additionally equips the non-gripping surfaces of the glove (e.g. back and sides) with a non-adhesive microstructure that prevents the glove from accidently adhering to surfaces during unintentional contact, even when touching otherwise sticky materials such as adhesive-coated automotive panels.

Digitally produced label transfer using selective laser sintering (SLS) methods

A heat transferable label component for a garment or other clothing item or article is disclosed which is preferably produced using all digitally controlled manufacturing methods. The label component comprises a carrier layer, a release layer, an optional primer layer, a color design layer, a transition layer and at least one adhesive layer. The color design layer displays an image on the label, and the transition layer fixates the image and renders it wash and/or wear resistant. The at least one adhesive layer is positioned on the transition layer, and is preferably applied thereto via a selective laser sintering (SLS) process, wherein a powder layer is spread on the surface and fused with a laser. The adhesive layer can be a double layer comprising a white reactive adhesive layer that undergoes a crosslink reaction to become a thermoset and a substantially clear thermoplastic adhesive layer.

PRESSURE-SENSITIVE ADHESIVE SHEET

Provided is a PSA sheet that can bond well with at least a prescribed bonding strength to an adherend before a curing treatment and that can greatly prevent adhesive transfer during separation from the adherend after the curing treatment even when exposed to a high temperature. Provided is a PSA sheet having a PSA layer comprising carbon-carbon double bonds. The PSA sheet satisfies a property that the PSA layer has an elastic modulus of 22 MPa or greater, determined by nanoindentation after a heating/curing treatment in which the PSA sheet is heated at 180° C. for one hour, left standing at 25° C. for 30 minutes and then irradiated with UV rays at an intensity of 60 mW/cm.sup.2.

ADHESIVE FILM, METHOD FOR MANUFACTURING SAME, AND FOLDABLE DISPLAY DEVICE COMPRISING SAME
20220112413 · 2022-04-14 · ·

The present application relates to an adhesive film a first polymer comprising a first (meth)acrylate resin and at least one type or more types of a monomer of the following Chemical Formula 1; and a second polymer comprising a second (meth)acrylate resin, a method for manufacturing the same, and a foldable display device comprising the same:

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TOUCH SCREEN SHIELD
20220075424 · 2022-03-10 ·

A shield that is attachable to a touch sensitive screen is disclosed. The shield may be attached to the touch sensitive screen only at its outer peripheral portion. An air gap is enclosed between the shield and the touch sensitive screen to form a planar air bearing. The shield preferably does not touch the active area of the touch sensitive screen when the user is not touching the shield but only viewing the touch sensitive screen through the shield. This mitigates unwanted optical artifacts such as trapped air bubbles, Newton rings and chromatic interference while maintaining the sensitivity of the touch sensitive screen.

HEAT-RESISTANT LAMINATE AND HEAT-RESISTANT ADHESIVE
20220064496 · 2022-03-03 ·

A heat-resistant laminate including a substrate and an adhesive layer, the adhesive layer including a (meth)acrylic adhesive polymer and a self-crosslinking (meth)acrylic copolymer having an epoxy group and an epoxy group-reactive functional group, the adhesive layer having a sea-island structure including a sea including the (meth)acrylic adhesive polymer and an island including the self-crosslinking (meth)acrylic copolymer, and the laminate having a 180 degree peeling force of 0.9 N/cm or more after bonding to a SUS board and leaving at 120° C. for 30 minutes as measured at a temperature of 60° C. and a peeling speed of 300 mm/min.