摘要:
Provided is an application device for applying and spreading an application liquid to and on a predetermined application area of a target surface, which is capable of smearing the application liquid on the application area. The application device (D) includes a brush unit (4) having a brush bristle bundle (41a), and performs a step of causing, while moving a nozzle orifice (32a) of a dispenser (3) along at least a portion of the surface of a rivet (S1) and an area of a wall (Sp) surrounding the base of the rivet (S1), a sealing liquid to be ejected from the nozzle orifice (32a) and to adhere to the portion, and thereafter, a step of spreading the adhering sealing liquid by causing the brush bristle bundle (41a) to slide on the surface of the rivet (S1) and the area of wall (Sp) surrounding the base of the rivet (S1).
摘要:
A cable processing apparatus according to the present invention comprises a length measuring unit, first and second clamp mechanisms, a cutter mechanism, first and second terminal bonding mechanisms, first and second transfer mechanisms, a cable discharge mechanism, and means for moving up and down a reception clamp portion of the cable discharge mechanism in synchronism with elevation of a clamp portion of the second clamp mechanism at the time of the terminal bonding operation of the second terminal bonding mechansm. The position of this reception clamp portion coincides with the position of a covered cable so that it can clamp the covered cable at the time of the terminal bonding operation of the second terminal bonding mechanism.
摘要:
A film forming apparatus which can perform a film forming process to a base material while the base material is being mounted on a die for a molding process. The film forming apparatus is provided with a cylinder-shaped frame body (1h) having one end closed with a bottom part and the other end opened, a target (1a) arranged on an inner plane of the bottom part, and a port (3b) formed to penetrate a wall part of the frame body (1h).
摘要:
A de-coating method capable of recycling a tool or a mechanical part coated with an inorganic material such as PCD (poly-crystalline diamond) is provided. According to the de-coating method, a substrate to be subjected to de-coating (coated body) is less likely to have a dead area during ion irradiation, a brittle phase is less likely to be formed in the substrate (metal body) in terms of temperature, and de-coating can be performed at an economical speed. The problems can be solved by the de-coating method including: exposing the coated body in which a coating made of an inorganic material is formed on a surface of the metal body to ion flows to peel off the coating from the metal body, wherein the coated body is placed at an ion flow-concentrated portion where two or more ion flows overlap each other, and is exposed to the ion flows without addition of a positive or negative bias to the coated body. As gases for use in generating ions from plasma, oxygen and CF 4 that promote de-coating through a chemical reaction are preferably used in addition to Ar that performs de-coating under the physical action of ion collision and stabilizes plasma.
摘要:
In a vacuum chamber, the edge of each blade group is subjected to an ion beam treatment under predetermined conditions using a plasma ion gun and argon as a medium, and is subjected to a plasma ion implantation of nitrogen plasma under predetermined conditions using a plasma ion implantation gun. As a result, it is possible to provide a blade member having an edge of a cutting quality enhanced by increasing the sharpness, a blade member having an edge of a rigidity enhanced by increasing the hardness, and a working apparatus capable of working those edges efficiently.
摘要:
A vibrating bowl capable of accurately counting the quantity of carried objects, a vibrating bowl feeder, and a vacuum deposition apparatus. The vibrating bowl (10) comprises a recessed part (10a) capable of accumulating the aggregate of the carried objects (15), a carrying passage (20) capable of carrying the carried objects by exciting the carried objects (15) inside the recessed part (10a), and a step part (26) for discharging the carried objects (15) to the outside of the recessed part (10a) along a diagonally downward direction approximately perpendicular to the carrying direction of the carried objects (15) present near the end of the carrying passage (20).