摘要:
A method of manufacturing electrical parts is provided, which method comprises the steps of: forming a photoresist on a part of the surface of a substrate; forming a metal layer on the surface of the substrate after the photoresist has been formed; removing a part of the metal layer; removing a metal oxide film formed on the: surface of the metal layer as a result of removing a part of the metal layer; and removing the photoresist. With this method the contact resistance on the surfaces of the electrical parts can be decreased.
摘要:
In order to provide a processing method according to which a highly precise microstructure can be easily formed with low manufacturing cost, the present invention is characterized by comprising the steps of: placing a thin film made of a resin between a pressing die and a facing base; heating the thin film made of a resin between a pressing die and a facing base to a temperature that is no lower than the temperature at which the resin starts being liquefied; and applying pressure to the thin film made of a resin between a pressing die and a facing base at a temperature that is no lower than the temperature at which the resin starts being liquefied, so that a through hole is formed.
摘要:
Provide a method and apparatus for producing, in an economical manner, metal powder offering high purity and comprising uniform particle shape and size. Produce metal powder of titanium metal, etc., using an apparatus that comprises a power supply for high-voltage/current discharge, a feeder of metal electrode made of titanium metal, etc., a high-voltage discharge generator equipped with a metal electrode made of titanium, etc., and its counter electrode, a water tank, a water inlet, an outlet for produced metal dispersion solution containing titanium metal, etc., a discharge pump, and an adjunct device for separating/recovering metal powder of titanium metal, etc., from the metal dispersion solution containing titanium metal, etc.
摘要:
A fiber product offering health-enhancing effects is obtained by causing a fibrous substrate to contain or be bonded with finely divided titanium powder through the process of impregnation with a water solution containing finely divided titanium powder, which is obtained by dissolving metallic titanium via the combustion gas produced by combusting a gaseous oxygen/hydrogen mixture in high-pressure water in a pressure-resistant tank.
摘要:
A method of manufacturing a contact probe includes an electroforming step of, using a resist film (522) arranged on a substrate (521) as a pattern frame having a shape corresponding to a contact probe, performing electroforming to fill a gap in the resist film (522) to form a metal layer (526), a tip end shaping step of obliquely removing and sharpening that part of the metal layer (526) which serves as a tip end portion of the contact probe, and a take-out step of taking out only the metal layer (526) from the pattern frame.
摘要:
A method of manufacturing a metal microstructure (1) by using a resin mold (13). In order to provide a method in which a mild manufacturing condition which causes less damage to the resin mold (13) can be set and the high-precision metal microstructure (1) can be mass-produced by uniform electroforming, the method of manufacturing the metal microstructure (1) according to the present invention includes the steps of: fixing on a conductive substrate (11) the resin mold (13) having a vacant portion penetrating in the direction of thickness, by interposing a photosensitive polymer (12) having a chemical composition changed by an electron beam, ultraviolet radiation or visible radiation so as to form a layered structure (2) having the resin mold (13); exposing the layered structure (2) having the resin mold (13) to an electron beam, ultraviolet radiation or visible radiation; removing an exposed photosensitive polymer (12c) existing at the vacant portion of the resin mold (13); and filling with a metal (14) the vacant portion of the layered structure (2) having the resin mold (13) by electroforming.
摘要:
This invention provides a method and apparatus for manufacturing titanium-dissolved water with molten titanium dissolved therein, the molten titanium being titanium metal melted by the combustion gas resulting from the combustion of a mixed gas of oxygen and hydrogen in high-pressure water, as well as the resultant titanium-dissolved water and health articles, medical articles and cosmetics utilizing the physiologically activating effect of the high-function water containing titanium.
摘要:
A method of manufacturing a contact probe includes an electroforming step of, using a resist film (522) arranged on a substrate (521) as a pattern frame having a shape corresponding to a contact probe, performing electroforming to fill a gap in the resist film (522) to form a metal layer (526), a tip end shaping step of obliquely removing and sharpening that part of the metal layer (526) which serves as a tip end portion of the contact probe, and a take-out step of taking out only the metal layer (526) from the pattern frame.
摘要:
A hair iron comprising a pair of openable/closable hair-sandwiching arms that each store in void spaces shielded by shielding members a heat-source plate and a hair-heating plate positioned adjacent to the heat-source plate and sandwiches hairs when the arms are closed; wherein the pair of arms are openably/closably connected on one end by a pivot, and spring pressure is used to maintain the pair or arms in opening directions in a normal condition; wherein the heating plates are installed so that they face each other; wherein tapered portions are provided in a base, on the void space side, of the heating plate, and a gasket is securely fitted in the formed tapered voids in order to improve the steam cutoff property of the void spaces; and wherein the temperature can be controlled easily at the operator's fingertips.
摘要:
Manufacture health ornaments such as necklaces, bracelets and wristbands that provide sufficient health-promoting function and effective therapeutic action for a long time, by burning a gaseous mixture of oxygen and hydrogen in high-pressure water, using the resultant gas to heat and granulate titanium material, and combining the obtained titanium powder with an elastomer material.