Abstract:
An electronic device includes a housing and an electronic module. The housing includes a transparent main body, a masking layer partially adhered to the transparent main body, and a cover. A bare area is exposed forming the masking layer to define a transparent window. The housing defines a receiving chamber and an open end communicating with the receiving chamber. The electronic module includes a touch display screen. The electronic module is received in the receiving chamber, the touch display screen aligns to the transparent window, and the cover seals the open end. The present disclosure further discloses a housing for the electronic device and a method for making the housing.
Abstract:
A housing includes a hollow sleeve, a top wall, and a cover. The top wall is integrally formed with the hollow sleeve and seals an open end of the hollow sleeve. The hollow sleeve and the top wall include an opaque first molded article and a transparent molded article. The first molded article defines a display window hole. The second molded article is formed on the first molded article and filled in the display window hole. The cover seals the other open end facing the open end which is sealed by the top wall. The present disclosure further discloses a method for making the housing.
Abstract:
A housing includes a metal member and a plastic member integrally formed with the metal member. The metal member defines a number of stepped holes. The stepped holes are filled with the plastic member. The plastic member and the metal member cooperatively define a flat surface of the housing.
Abstract:
A plastic housing includes a substrate, an activating metal coating made of noble metal, a chemical metal coating deposited on the activating metal coating, an oxidized metal film formed on and partially covering the chemical metal coating, an electroplated metal coating formed on a portion of the chemical metal coating not covered by the oxidized metal film, and a patterned ink coating formed on the oxidized metal film. The patterned ink coating is recessed relative to the electroplated metal coating.
Abstract:
A sliding mechanism (100) used in a portable electronic device (200) is provided. The sliding mechanism includes a sliding member (12). The sliding member includes a cover portion (121) and two sliding rails (123). The cover portion is made of a plastic material that can be electro-plated. The sliding rails are made of another plastic material that has a low coefficient of friction.
Abstract:
A method for forming pattern on substrate comprises steps of: providing a metal substrate; amorphousizing the metal substrate to from an amorphous pattern layer in the metal substrate; etching the metal substrate and forming an etching portion in the surface of the metal substrate which is not covered with the amorphous pattern layer. The article manufactured by the method is also provided.
Abstract:
A plastic article comprises a first plastic substrate and a second plastic substrate formed on the first plastic substrate. The refractive index of the first plastic substrate different then the refractive index of the second plastic substrate. The first plastic substrate comprises a first surface abutting the second plastic substrate. The first surface presented with a first pattern. The first pattern comprises a plurality of first convexes. A method for manufacturing the plastic articles is also provided.