B32B2260/028

Composite panel, composite material, impregnator and method for manufacturing a composite panel
11407214 · 2022-08-09 · ·

A composite panel comprising a first composite skin having a first fabric layer positioned between a first Kraft paper layer and a second Kraft paper layer; a second composite skin having a second fabric layer positioned between a third Kraft paper layer and a fourth Kraft paper layer; a foam core bonded to the first composite skin and to the second composite skin; and a binding composition applied to the first fabric layer and to the second fabric layer and penetrating the second Kraft paper layer and the third Kraft paper layer so that the first composite skin is bonded to a first surface of the foam core and the second composite skin is bonded to a second surface of the foam core.

Surface treated copper foil, copper clad laminate, and printed circuit board

A surface treated copper foil 1 includes a copper foil 2, and a first surface treatment layer 3 formed on one surface of the copper foil 2. The first surface treatment layer 3 of the surface treated copper foil 1 has a Ni concentration of 0.1 to 15.0 atm % based on the total amount of elements of C, N, O, Zn, Cr, Ni, Co, Si, and Cu, in an XPS depth profile obtained by performing sputtering at a sputtering rate of 2.5 nm/min (in terms of SiO.sub.2) for 1 minute. A copper clad laminate 10 includes the surface treated copper foil 1 and an insulating substrate 11 adhered to the first surface treatment layer 3 of the surface treated copper foil 1.

Surface treated copper foil, copper clad laminate, and printed circuit board

A surface treated copper foil 1 includes a copper foil 2, and a first surface treatment layer 3 formed on one surface of the copper foil 2. The first surface treatment layer 3 of the surface treated copper foil 1 has a Ni deposited amount of 20 to 200 μg/dm.sup.2 and a Zn deposited amount of 20 to 1,000 μg/dm.sup.2. A copper clad laminate 10 includes the surface treated copper foil 1 and an insulating substrate 11 adhered to the first surface treatment layer 3 of the surface treated copper foil 1.

Decorative HPL panel

The present invention relates to a decorative high pressure laminate (HPL) panel, comprising an outermost décor layer and a core layer, wherein said panel further comprises at least one photovoltaic element for converting the energy of light into electricity by the photovoltaic effect, said at least one photovoltaic element is located between said outermost décor layer and said core layer.

POLYPHENYLENE ETHER RESIN COMPOSITION, PREPREG, METAL-CLAD LAMINATE

A polyphenylene ether resin composition includes (A) polyphenylene ether, and (B) a block copolymer including a butadiene block having a molar ratio of a 1,2-bonding structure to a 1,4-bonding structure of 80:20 to 100:0 and a styrene block. The number average molecular weight (Mn) of the component (A) may be 1,000 to 7,000, the weight ratio of the styrene block to the butadiene block in the component (B) may be 10:90 to 80:20, and the weight average molecular weight (Mw) of the component (B) may be 2,000 to 100,000.

MANUFACTURING METHOD OF SHEET-LIKE CONDUCTIVE MEMBER, AND SHEET-LIKE CONDUCTIVE MEMBER
20220242099 · 2022-08-04 ·

A manufacturing method of a sheet-shaped conductive member includes: providing a pseudo sheet structure to a first film, the pseudo sheet structure including a plurality of conductive linear bodies arranged at an interval therebetween, the first film including a process film and a first resin layer; attaching a second film including a second resin layer to the first film with the second resin layer in contact with the pseudo sheet structure; and drying or curing at least one of the first resin layer or the second resin layer.

FLOOR PANEL

A floor panel with a substrate, including thermoplastic material, a decor provided thereon, and, on at least one pair of opposite edges, coupling parts realized at least partially from the substrate. The coupling parts allow a mechanical locking between two of such floor panels, where the substrate includes a rigid, non-foamed substrate layer of thermoplastic material.

HYGIENIC PEEL-OFF PAPER ROLL FOR CART HANDLE
20220281504 · 2022-09-08 ·

A hygienic peel-off paper roll for application to a cart handle comprises a paper roll formed of a semi-rigid tube and a plurality of sheets of paper wrapped around the tube, wherein the paper roll is sized to accommodate the diameter and length of the cart handle and provided with a slit therethrough along its length such that the paper roll may be applied to and cover the handle by forcing it onto the handle at the slit, to cause the paper roll to flex outwardly and over the handle and resiliently return to its original shape on the handle. The sheets are preferably adhered to the tube at the opposite ends of the tube, and a top one of the sheets of paper may be removed from the paper roll to thereby expose a sheet underneath the top one of the sheets.

OUTDOOR CABINET
20220288810 · 2022-09-15 ·

An outdoor cabinet is provided, including at least one carcass fabricated from an engineered wood, the carcass having walls and a waterproof facing on at least one of the walls. The cabinet includes at least one door fabricated from a thermoplastic polymer, where the door is attached to the carcass by at least one hinge. The engineered wood may be medium density fiberboard. The thermoplastic polymer may be high density polyethylene. The waterproof facing may be melamine.

Decorative sheets

A decorative sheet includes a primary film layer; a transparent resin layer; and a surface protective layer, in this order; the surface protective layer is formed of a plurality of layers with a layer located on an outermost surface is a surface protective layer, and a layer underlying the surface protective layer is a second surface protective layer and includes one or more ionizing radiation-curable resins having an erosion rate E in a range of 0.10 μm/g or more and 0.45 μm/g or less, and one or more thermosetting resins having an erosion rate E in a range of 0.30 μm/g or more and 0.6 μm/g or less, the erosion rate E being measured by using polygonal alumina powder having an average particle size (D50) of 1.2 μm, and a mass ratio between the ionizing radiation-curable resin and the thermosetting resin (ionizing radiation-curable resin/thermosetting resin) is 95/5 to 40/60.