Patent classifications
B32B2264/1051
DECORATIVE SHEET AND DECORATIVE MEMBER
A decorative sheet and a decorative member having high scratch resistance and antiviral properties. The decorative sheet includes a substrate sheet, an adhesive layer, a surface protective layer, and a thermoplastic resin layer, wherein at least one of the surface protective layer and the thermoplastic resin layer contains a nucleating agent or inorganic particles, and the surface protective layer has added thereto an antiviral agent at an amount of 0.2 parts by mass or more and 10 parts by mass or less.
ANTIMICROBIAL MULTILAYER STRETCH-WRAP AND METHOD TO PRODUCE THE SAME
A multilayer antimicrobial stretch plastic wrap, comprising at least three layers, wherein at least one layers comprising multiple metal compound particles integrated into said layer material, and wherein said at least one layer is not the central layer of the wrap and wherein, said at least one layer is proximal to an outer surface of the wrap than to the center of the wrap.
NOVEL PORTABLE TOILET SEAT COVER
The present disclosure belongs to the technical field of disposable toilet seat covers, and in particular to a novel portable toilet seat cover. The novel portable toilet seat cover comprises more than one unit layers, each unit layer comprises a surface layer, and a base layer. The surface layer is arranged at a first surface of the base layer, and the bottom layer is arranged at a second surface of the base layer; the surface layer is a release layer for preventing skin adhesion.
MULTI-LAYER SELF-ADHESIVE SURFACE PROTECTION FILM AND METHODS OF USE
Embodiments of the present invention relate to pressure-sensitive adhesive plastic film or sheet optionally having antimicrobial properties. The film or sheet can be applied to numerous frequent use objects and finds particular utility in the health care field. The pressure-sensitive adhesive plastic film or sheet can be supplied in pads that can be applied to both the outermost, or patient, side of the face shield, or it can be applied to the innermost, or healthcare professional, surface. After the object, such as a face shield, has been used, the top layer of the pressure-sensitive adhesive plastic can be removed and discarded.
TRANSPARENT CONDUCTING FILM LAMINATE AND PROCESSING METHOD THEREOF
Provided are a transparent conducting film laminate to which a curl generated during a heating step and after the heating step can be controlled, and a method for processing the same. A transparent conducting film laminate comprises a transparent conducting film 20 and a carrier film 10 stacked thereon, wherein the transparent conducting film 20 comprises a transparent resin film 3, transparent conducting layer 4, and an overcoat layer 5 stacked in this order, the transparent resin film 3 having a thickness T.sub.1 of 5 to 25 μm and being made of an amorphous cycloolefin-based resin, the carrier film 10 is releasably stacked on the other main face, the face opposite to the face having the transparent conducting layer 4, of the transparent resin film 3 with an adhesive agent layer 2 therebetween, and a protection film 1 has a thickness T.sub.2 which is 5 times or more of the thickness T.sub.1 of the transparent resin film 3 and is 150 μm or less, and is made of polyester having an aromatic ring in its molecular backbone.
LAMINATE
The present invention is a laminate including a base sheet and a metal particle-containing layer laminated on the base sheet, and including metal particles. The base sheet has a contact surface in contact with the metal particle-containing layer, and a Young's modulus of the base sheet at 23° C., which is obtained by measuring the contact surface using a nano-indentation method, is 0.01 to 10 GPa.
LAMINATE
There is provided a laminate including, in the following order, a protective layer, a base material, a reflective layer having a maximum reflection wavelength in a wavelength range of 380 nm to 2,000 nm, and an adhesive layer, in which in a case where a modulus of elasticity of the protective layer is denoted by E1, a modulus of elasticity of the base material is denoted by E2, and a modulus of elasticity of the adhesive layer is denoted by E3, a relationship of E1≥E2>E3 is satisfied. The laminate is preferably a layer having an uneven structure, and more preferably the uneven structure has an uneven structure having a depth of 1 μm or more.
RADIO WAVE TRANSMISSION COVER AND METHOD FOR MANUFACTURING THE SAME
Provided is a radio wave transmission cover having a manufacturability at low cost and a suppressed peeling of layer, which comprises a resin substrate; a transparent film layer serving as an exposed portion; a transparent ion-exchange resin layer disposed between the resin substrate and the transparent film layer; an adhesive layer disposed between the resin substrate and the transparent ion-exchange resin layer; and a discontinuous film of Ag particles formed on a surface on the resin substrate side of the transparent ion-exchange resin layer, wherein a transparent ion-exchange resin of the transparent ion-exchange resin layer has a resin skeleton with an ion-exchangeable functional group, and a distance Ra between a Hansen solubility parameter (HSP) value of the transparent ion-exchange resin and a HSP value of the transparent film is 20 or less, and a method for manufacturing the same.
MULTILAYER BASE THAT CAN BE GLUED TO THE SKIN TO FORM SELF-ADHESIVE PROSTHESES FOR HAIR AND PROSTHETIC IMPLANTS THUS OBTAINED
A multilayer base designed to be bonded to the skin so as to form a prosthesis for self-adhesive hair, comprising an acrylic film with the addition of 0.1 to 3% of silver ions having the shape of the crown of the user's cranium and a polyurethane membrane onto which the hair is grafted attached to said acrylic film, characterized in that 0.1 to 3% by weight of micronized silver powder, 0.1 to 3% of nano-bio-ceramics and 0.1 to 3% of maslinic acid are added to the polyurethane polymer forming the membrane onto which the hair is grafted.
Photocatalyst transfer film and production method thereof
Provided are a photocatalyst transfer film allowing a photocatalyst layer that is uniform, highly transparent, and exhibits an antimicrobial property in dark places to be transferred to the surfaces of various transfer base materials; and a production method thereof. The photocatalyst transfer film has, on a base film, a photocatalyst layer containing a titanium oxide particle-containing photocatalyst, antimicrobial metal-containing alloy particles, a silicon compound and a surfactant. The production method of the photocatalyst transfer film includes applying a photocatalyst coating liquid to a base film; and performing drying. The photocatalyst coating liquid contains a titanium oxide particle-containing photocatalyst, antimicrobial metal-containing alloy particles, a silicon compound, a surfactant and an aqueous dispersion medium.