Patent classifications
B32B17/08
Precious metal sheet display and method of manufacturing
A precious metal sheet display includes a sheet of precious metal cut into a form, and a layer of ink on the sheet such that the ink, the metal, and the form together create a recognizable image.
MULTILAYER STRUCTURE
A multilayer structure includes a polarizing plate; a glass layer laminated on one side of the polarizing plate via an adhesive layer; and an optical display laminated on another side of the polarizing plate via a bonding layer, wherein the glass layer has a thickness of 10 m or more and 300 m or less, and a thickness x of the bonding layer and an elastic modulus y of the bonding layer at 85 C. satisfy y(299/60)x296/3.
Articles having low coefficients of friction, methods of making the same, and methods of use
Briefly described, embodiments of this disclosure include articles and methods of making articles.
Melamine resin decorative sheet and method of refurbishing finished surface
A melamine resin decorative sheet of the present invention includes a laminate structure of a surface layer and a core layer, in which the surface layer is configured of a surface layer material composed of a surface layer base material which carries a resin containing a melamine resin on a first surface side that serves as a design surface and which carries a solid content of a thermoplastic emulsion resin on a second surface side that contacts with the core layer, and in which the core layer is configured of a heat dissipative material layer.
Double-pane insulating glazing units
The invention provides a double-pane insulating glazing unit having a single between-pane space. The single between-pane space is located between the two glass panes. Preferably, the double-pane insulating glazing unit is devoid of a third glass pane. The double-pane insulating glazing unit has an aerogel layer located in the between-pane space.
Double-pane insulating glazing units
The invention provides a double-pane insulating glazing unit having a single between-pane space. The single between-pane space is located between the two glass panes. Preferably, the double-pane insulating glazing unit is devoid of a third glass pane. The double-pane insulating glazing unit has an aerogel layer located in the between-pane space.
Articles having low coefficients of friction, methods of making the same, and methods of use
Briefly described, embodiments of this disclosure include articles and methods of making articles.
DOUBLE-PANE INSULATING GLAZING UNITS
The invention provides a double-pane insulating glazing unit having a single between-pane space. The single between-pane space is located between the two glass panes. Preferably, the double-pane insulating glazing unit is devoid of a third glass pane. The double-pane insulating glazing unit has an aerogel layer located in the between-pane space.
DOUBLE-PANE INSULATING GLAZING UNITS
The invention provides a double-pane insulating glazing unit having a single between-pane space. The single between-pane space is located between the two glass panes. Preferably, the double-pane insulating glazing unit is devoid of a third glass pane. The double-pane insulating glazing unit has an aerogel layer located in the between-pane space.
Laminated glass
To provide laminated glass that can significantly reduce air bubbles remaining inside. Laminated glass having a first glass substrate and a second glass substrate laminated to each other, which has a first interlayer disposed between the first glass substrate and the second glass substrate and being in contact with the first glass substrate, a second interlayer disposed between the first glass substrate and the second glass substrate and being in contact with the second glass substrate, first and second functional members disposed between the first interlayer and the second interlayer and being in contact with the first interlayer and the second interlayer, wherein the first and second functional members have a higher rigidity than the first and second interlayers, and the first and second functional members are spaced apart from each other by a distance d when the laminated glass is viewed in plan view, and said distance d is at least 15 mm.