Abstract:
PURPOSE: A method for manufacturing a film having a three-dimensional pattern is provided to expand an application range of the film into various fields by applying the film to parts of various shapes having a bent part. CONSTITUTION: A method for manufacturing a film having a three-dimensional pattern comprises: a first step forming a backing sheet layer; a second step forming a paint layer by coating the baking sheet layer with paint including magnetic flakes; a third step giving magnetic and three-dimensional properties using a rubber magnet belt in the film; a fourth step irradiating ultraviolet ray to the film; a fifth step hardening the film; and a sixth step laminating a transparent film layer on the upper part of the hardened film.
Abstract:
PURPOSE: A method for coating a magnetic three-dimensional pattern is provided to easily obtain the magnetic three-dimensional pattern without an additional process for coating the three-dimensional pattern on a coated paint and to improve workability. CONSTITUTION: A method for coating a magnetic three-dimensional pattern comprises: a first step which sprays paint including ferromagnetic substance and a mixed solvent on an object to be painted; and a second step applying a magnetic field of 150 ~ 900 Gauss t o the object in which the paint is sprayed for 10 seconds ~ 10 minutes using a magnet. The magnet is rubber magnet, Nd-Fe-B magnet, ferrite magnet, or electromagnet.
Abstract:
PURPOSE: A sterical pattern magnetic paint is provided to obtain a sterical pattern on the surface of a desired spare part, and to prevent a coating film from peeling off while using products applied with the paint. CONSTITUTION: A sterical pattern magnetic paint contains 30~100 parts of mixed solvent by weight including a hydrocarbon solvent and a ketone solvent for 100 parts of metallic paint by weight. The metallic paint contains 30~60wt% of polybutadiene modified acrylic polyol resin, 1~20wt% of polyester resin, 1~20wt% of cellulose acetate butylate, 5~15wt% of polyolefin-based wax spreader, 0.1~8wt% of fatty acid amide wax spreader, 2~10wt% of ferrite magnetic pigment, and 5~20wt% of hardener.
Abstract:
A hood latch structure for a vehicle is provided to secure an impact absorption time and an impact absorption space in order to maximize a pedestrian protective effect even in a narrow place, which results from a rotary structure of the hood latch. A hood latch structure for a vehicle comprises: a front end module carrier(10); a hood panel(30) installed on the top of an engine room in order to selectively open the engine room of a vehicle; a hood strike(40) pivotally arranged in a lower part of the hood panel; and a hood latch(20) arranged on one side of the front end module carrier. The hood latch consists of: a hood latch body(22) arranged on one top side of the front end module carrier; a hood latch hook(21) integrally formed on the top of the hood latch body; and a hood latch fixing bar(24) formed on both sides of the hood latch body in one body.
Abstract:
본 발명은 프론트 앤드 모듈 캐리어구조에 관한 것으로, 프론트 앤드 모듈의 하부캐리어와 상부부재를 별도로 성형하여 결합시켜도 강성의 저하를 방지할 수 있을 뿐만 아니라 설계정도의 향상을 도모할 수 있고, 차량의 냉각장치의 정비성을 대폭 향상시켜 작업시간과 작업 공수를 절감할 수 있으며, 엔진룸의 레이아웃상 공간확보도 용이하도록 하기 위해, 플라스틱 재질에 스틸 보강재가 인서트되어 형성된 프론트 앤드 모듈 하부캐리어에 보강부재로 보강된 상부부재가 체결된 구조로 이루어져 있다.