Patent classifications
B32B2264/104
LAMINATED GLASS AND AUTOMOBILE DOOR
A laminated glass provided in an automobile door panel including two panel boards facing each other and seal members provided on facing surfaces of the panel boards at regions along a beltline, the laminated glass being openable and closable by being provided between the two panel boards so as to slide between the seal members, the laminated glass includes: a laminated glass main body including at least two glass plates and an interlayer film sandwiched between the glass plates and having a storage modulus G of 1.5×10.sup.6 Pa or more; and a viscoelastic member provided on a surface of the laminated glass main body, the viscoelastic member abutting on the seal member or the panel board and sealing a gap between the seal member or the panel board and the laminated glass main body, at a closed time of the laminated glass.
COATINGS COMPRISING ANTIMICROBIAL ACTIVE INGREDIENTS FOR FOOD PACKAGING
The present invention relates to a sheet-like element suitable for use in a food packaging, comprising a coating layer comprising surface-reacted calcium carbonate. The coating layer is adapted for being loaded with an antimicrobial active composition, such as an essential oil. The present invention further relates to a coating layer comprising surface-reacted calcium carbonate loaded with an antimicrobial active composition suitable for use in a food packaging, as well as to a process for the manufacture of said sheet-like element, a sheet-like element supply device, a food packaging comprising said sheet-like element, the use of said sheet-like element in a food packaging and the use of said sheet-like element for achieving an antimicrobial and/or antifungal and/or anti-mould and/or antifouling effect in a food packaging.
BI-DIRECTIONALLY ORIENTED MULTILAYER FILM
A multilayer film includes an inner layer system having a first surface and a second surface; a first skin layer bound to the inner layer system at the first surface of the inner layer system; and a second skin layer bound to the inner layer system at the second surface of the inner layer system. The inner layer system contains ≥50.0 wt % of a first ethylene-based polymer being a high-density polyethylene having a density of ≥940 and ≤970 kg/m.sup.3; and one or both of the first or the second skin layer(s) is a sealing layer including a second ethylene-based polymer being a linear low-density polyethylene comprising polymeric moieties derived from ethylene and from 1-hexene or 1-octene, having a density of ≥890 and ≤915 kg/m.sup.3. The multilayer film is a bi-directionally oriented film, wherein the orientation in both directions is introduced in the solid state.
Cover foil as a push-through foil for a blister pack
A cover foil as a push-through foil for a blister pack for packaging moisture-sensitive products has an aluminum foil as the barrier layer against the penetration of water vapor and gases and a sealing layer for sealing against a blister base part. A plastics material layer containing moisture-adsorbing drying agent is arranged on the side of the aluminum foil provided with the sealing layer.
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.
LAMINATE FOR BLISTER PACK, BLISTER PACK USING SAME, BLISTER PACK PACKAGE, AND METHOD FOR MANUFACTURING SAME
The present invention provides a laminate for blister packs which is not susceptible to molding failures even if a pocket is formed to a certain depth in order to pack the contents of large drug or the like. The present invention provides a laminate for blister packs, the laminate having a substrate film, an adhesive resin layer having a thickness of 25-100 μm, and an absorption film in this order. The absorption film comprises an absorption layer including a thermoplastic resin and an inorganic absorbent.
ACRYLIC RESIN COMPOSITION AND LAMINATE FORMED BY LAMINATING SAME
Disclosed is an acrylic resin composition that has excellent weather resistance and can be stably produced at high temperatures. Specifically, disclosed is an acrylic resin composition including, with respect to 100 parts by mass of an acrylic resin, from 0.1 to 8 parts by mass of a triazine-based UV absorber including 2-(4,6-diphenyl-1,3,5-triazin-2-yl)-5-[2-(2-ethylhexanoyloxy)ethoxy]phenol, wherein the acrylic resin used is an acrylic resin including at least 80 wt % of methyl methacrylate as a monomer component, and having a glass transition temperature of at least 80° C.
Mold release film and method for producing laminate
Provided is a mold release film capable of transferring a concave-convex structure to the surface of an adhesive film.
Vapor-permeable, substantially water-impermeable multilayer article
This disclosure relates to an article (e.g., a vapor-permeable, substantially water-impermeable multilayer article) that includes a nonwoven substrate and a film supported by the nonwoven substrate. The film includes a polyolefin, a nanoclay, and a pore-forming filler.
POLYMER FOAM LAMINATE STRUCTURE
The present invention relates to a polymer foam laminate structure (1), comprising—a first solid layer (101) having a density of more than 1000 g/l, which is covered by at least one first functional layer (103), —a polymeric foam layer (105) provided on the at least one first functional layer (103), —a second solid layer (109) having a density of more than 1000 g/l, which is covered by at least one second functional layer (107), the at least one second functional layer (107) being in contact with the polymeric foam layer (103), wherein the polymeric foam layer (105) has a density of 20 g/l to less than 1000 g/l. The present invention further pertains a method for preparing a polymer foam laminate structure (1) and a composite component (1000) inter alia comprising the polymer foam laminate structure (1).