Abstract:
PROBLEM TO BE SOLVED: To provide a metal layer for imparting metal-like appearance and a conductive layer functioning as an antenna etc., on the housing surface of an electronic apparatus such as a portable device.SOLUTION: This transfer foil 18 transferred to the surface of an object 16 includes: the conductive layer 26 functioning as an antenna etc.; the metal layer 22 for imparting the metal-like appearance to the object 16; an insulating layer 24 for insulating the conductive layer 26 from the metal layer 22; and an adhesive layer 20 where the insulating layer 24 is transparent, the conductive layer 26 is positioned on the other side of the object of the metal layer 22, and composed of a transparent conductive material 34 obtained by dispersing silver nanofibers 30 in a transparent binder resin 32, and the conductive layer is transparent.
Abstract:
PROBLEM TO BE SOLVED: To provide a two color simultaneous muffle painting molded article imparting deepness (feeling of depth) to a molding even for a molding having protruded parts or recessed parts on a rear face. SOLUTION: A primary mold 14 and a first core mold 17 are mold-closed with a muffle painting sheet Sa sucked to a primary molding cavity 14a, by using the primary mold 14 having the primary molding cavity 14a, a secondary mold 16 having a secondary molding cavity 16a, the core mold 17 having a plurality of recessed parts or grooves and mold-closed with the primary mold 14 or secondary mold 16, and the muffle painting sheet Sa having a pattern layer, and resin is injected to form a primary mold resin part. After mold opening, the primary mold resin part with the pattern layer applied thereto is moved to the secondary mold 16 in a closely attached state to the first core mold 17, the first core mold 17 and secondary mold 16 are mold-closed and the resin is injected to mold a secondary resin part integrally with the primary mold resin part, and to set the pattern layer between the two mold resin parts. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a transfer molding method which can remove foreign matter adhering to the molding part of a mold in a short time without detaching the mold. SOLUTION: The transfer molding method includes a foreign matter removing process in which an opening window part 24 is formed to a transfer film 20 and opposed to the molding part of the mold to hold the film 20 in the mold closed state, a molten resin is injected into the cavity of the mold, and the resin is lost-molded. By performing the foreign matter removing process after a transfer molding process is repeated, the foreign matter adhering to the molding part of the mold can be removed in the state bonded to a molded product. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a method for producing a patterned coating material with which pattern formation is carried out without requiring a troublesome work and which has no risk of damaging an object body to be coated. SOLUTION: After a coating material is applied to the surfaces of a large number of granular carriers, the carriers having the coating material adhering thereon and an object body to be coated which has groove parts are stirred together so as to prevent the carriers from getting into contact with the groove parts of the object body to be coated the coating material adhering to the carrier surfaces is transferred to part of the object body to be coated except the groove parts.
Abstract:
PROBLEM TO BE SOLVED: To provide a visual inspection device of a resin molded article capable of detecting irregular defects produced on a surface decorated with a pattern. SOLUTION: The visual inspection device includes a light source 21 having definite directionality and a camera 31 for photographing reflected light. The light source 21 emits principal emitting light in the direction of an emitting optical axis 22, and also radiation angle light having a definite expanse angle centering around the emitting optical axis. The principal emitting light from the light source 21 is shielded by arranging a shield plate 25 in the light path between the light source 21 and an inspection target 41, thereby forming a radiation angle light illuminating region 46 on the surface of the inspection target. A photographed image is obtained by photographing the radiation angle light illuminating region 46 by the camera 31, and the irregular defects is inspected from the photographed image. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a transfer molding apparatus which can send a film for transfer at a high speed, increases a fabrication number per unit time, and improves the manufacturing efficiency. SOLUTION: The rotational frequency of a film feeding roller 44 is controlled so that the film 20 for the transfer is moved only slightly larger feeding rate than the spacing of the longitudinal direction mark which adjoins the feeding direction, and it is made to stop before the transfer molding by a transfer molding section, the film feeding roller 44 is made to actuate so that the above film 20 for the transfer to the feeding direction may be moved in the returning direction. After the longitudinal direction mark detection section detects the longitudinal direction mark, the rotation frequency of the film feeding roller 44 is controlled, and the longitudinal direction transfer position is made to suspend the film 20 for the transfer. A fixed die 2 and a movable die 4 are closed. Melting resin is injected from an injection nozzle 5 to a cavity, and the symbol of the film 20 for the transfer is transformed to a mold component simultaneously with the shaping. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an in-mold decorating apparatus in which an apparatus for horizontally transferring a decorated sheet can be installed even in a narrow space and to provide an apparatus for horizontally transferring a decorated sheet. SOLUTION: In the in-mold decorating apparatus, decorated sheets 37 and 67 are inserted between a fixed mold 31 and a movable mold 61, and a melted resin is injected into the molds, whereby the decorated sheets 37 and 67 are adhered to the surface of a molded resin article 81, and there are installed an apparatus 40 for vertically transferring a decorated sheet which supplies vertically and winds up the decorated sheet 67, and an apparatus 10 for horizontally transferring a decorated sheet, which supplies horizontally and takes up the decorated sheet 37. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing method of an appearance inspecting apparatus and a resin molding article capable of improving accuracy in detecting a trace amount and of performing an appearance inspection and a UV irradiation in the same step, for improving the productivity of the resin molding article. SOLUTION: An appearance inspecting apparatus 10 includes: an illuminator 11 for irradiating the surface of a resin-molded article 20 with UV light; a line camera 12 for receiving the light reflected by the UV from the surface of the resin-molded article 20 to perform imaging, an imaging processing apparatus 14 for performing imaging processing on the inspection image acquired with imaging by the line camera 12; and a conveyor 13 for conveying the resin-molded article 20 so as to pass through the region, wherein the illuminator 11 illuminates UV. In a manufacturing method of the resin-molded article 20 using the appearance inspecting apparatus 10, since a UV curing of a hard coat layer 21 and an appearance inspection using UV light are performed simultaneously, the productivity of the resin-molded article 20 can be improved. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To polish an object to be polished in a short time and to prevent a generation of abrasive streak by retaining the large number of abrasives having a magnetism to an abrasives retainer by a magnetic force and vibrating at least one of the object to be polished or the abrasives. SOLUTION: The large number of abrasives 1 having a magnetism are retained to an abrasives retainer 2 by a magnetic force. An object 5 to be polished is disposed so as to contact with the abrasives 1. At least one of the object 5 to be polished or the abrasives is vibrated. In order to vibrate at least one of the object 5 to be polished or the abrasives 1, a vibration source 4 such as a vibration motor and an air vibrator is preferably used. The vibration number is preferably 50-1000 Hz. It is also preferable that at least one of the object 5 to be polished or the abrasives 1 is also vibrated at the same time as when the substance 5 to be polished is contacted with the abrasives on the abrasive retainer 2. In order to vibrate the abrasives 1, it is preferable that the abrasives retainer 2 is vibrated.
Abstract:
PROBLEM TO BE SOLVED: To damage no plate material and plate material fixing frame by holding the plate material on a plate material insertion groove provided on a female passementerie, fitting the male and female passementeries to each other, and holding the end face of a door by a holding part provided respectively. SOLUTION: A plate material molding frame is injection molded with a molten resin and formed. A female passementerie 10 supporting the end of one face side of a door 1 is constituted of a base part 11, a door holding part 12 and a fitting part 15 having a groove 16. A male passementerie 20 holding the side face of the other face side of the door 1 is constituted of a base part 21, a door holding part 22, a plate material holding part 26 and a fitting shaft 25. When plate material 3 is inserted in the window part of the door 1, the four side ends of the plate material 3 are inserted in the plate material insertion groove 18 of the female passementerie 10 and supported by the female passementerie 10. Next, the female passementerie 10 is set in the window part from one side of the door 1. Next, the fitting shaft 25 is fitted to the shaft fitting groove 16 from the other face of the door 1. Accordingly, external appearance quality can be heightened, working is simplified, and looseness is not produced in the plate material 3.