Abstract:
A shell for an electronic device comprising a shell body (1), a pattern layer (2) on the outer surface of the shell body (1) and a transparent protective layer (3) on the pattern layer (2) is provided, wherein the pattern layer (2) can be formed by curable material. Furthermore, a method for manufacturing the shell (1) and an electronic device with the shell (1) are provided. The shell (1) has fine patterns and stereo vision effect; meanwhile, it has better wear resistance.
Abstract:
A workpiece and an electronic device. The workpiece comprises a substrate, wherein a texture layer is provided on the surface of one side of the substrate and comprises a plurality of first-level regions; each first-level region comprises a plurality of structural units; the plurality of structural units comprise at least a first structural unit and a second structural unit, which are connected to each other; the first structural unit and the second structural unit each internally comprise a plurality of sequentially arranged first texture stripes and a plurality of sequentially arranged second texture stripes; two ends of at least some first texture stripes both fall on the contour of the first structural unit; two ends of at least some second texture stripes both fall on the contour of the second structural unit; and the ends of the at least some first texture stripes are in contact with the ends of the at least some second texture stripes.
Abstract:
A metal-plastic composite and method for producing the same are provided. The metal-plastic composite comprises: a metal substrate and a plastic body jointed to the metal substrate via a dual-snap-fit structure, in which the dual-snap-fit structure comprises: a micro-snap-fit structure disposed on the metal substrate and a macro-snap-fit structure formed by the micro-snap-fit structure and a surface of the metal substrate.
Abstract:
A method of forming a shell of an electrical device comprises the steps of: providing a sheet with a photocured adhesive coating (103) formed on a side thereof, the coating (103) forming a predetermined pattern (101), conforming the sheet with the photo-cured coating (103) to at least a part of an outer configuration of the shell; injecting base material into an injection mold for forming the shell while placing the sheet inside the injection mold ,with the side on which the photocured coating (103) is formed facing toward a cavity of the injection mold; and removing the sheet and the adhered coating from the shell. With the method of the present invention, it is easy to manufacture a well decorated shell of an electrical device with universal adaptability.
Abstract:
A texture structure (100), a cover plate, a mobile terminal, and a preparation method for the cover plate. The texture structure (100) includes a substrate (10), and a plurality of groups of gratings (20) provided on one side of the substrate (10). The plurality of groups of gratings (20) are arranged on the surface of the substrate (10) in a crisscross pattern, wherein each group of gratings (20) includes a plurality of grating units (21) arranged side by side and extending in the same direction, and each grating unit (21) is configured to have a grating surface (30) inclined to the substrate (10).
Abstract:
The present disclosure provides a metal-resin composite and a preparation method. The metal-resin composite includes a metal substrate; a porous resin layer formed on the metal substrate; a plastic layer formed on the porous resin layer; and a pore passage. The pore passage passes through the porous resin layer and extends inside the metal substrate, and the plastic layer fills in the pore passage so as to combine with the metal substrate.
Abstract:
Disclosed are a composite material, a shell for a mobile device, their manufacturing methods, and a mobile device. The composite material includes: a first metal substrate (100); a first resin fibre plate (200) disposed on an upper surface of the first metal substrate; an antenna layer (300) disposed on an upper surface of the first resin fibre plate; a second resin fibre plate (400) disposed on an upper surface of the antenna layer; and a second metal substrate (500) disposed on an upper surface of the second resin fibre plate.
Abstract:
A key (7) comprises a light transmitting key base, a three-dimensional cured resin layer (3) disposed on a lower surface of the base, and a pattern layer (5) disposed on a lower surface of the three-dimensional cured resin layer.The three-dimensional cured resin layer may be formed with a microstructure (6) on a lower surface facing the upper surface of the pattern layer Further, a key board comprising the key is also provided.