Abstract:
A wiping pad includes: a scraping edge provided to cross a long side direction of a discharge port and come into contact with the discharge port and nozzle side surfaces, and a lead-out passage provided ahead of the scraping edge in a moving direction along a nozzle long side direction to drain a treatment solution scraped away with the scraping edge, wherein the lead-out passage is a V-shaped groove formed along the moving direction on a pad upper surface side, and the V-shaped groove has the scraping edge formed at a rear end edge portion thereof and is formed to gradually increase in groove width and depth toward a front thereof from the scraping edge.
Abstract:
A systems and method for reducing coating defects on a stent may involve a support apparatus comprising wire cage for carrying a stent. The support apparatus may have no structure that extends inside the stent. A support apparatus may include a plurality of wires that pass through the stent but do not pass through the midplane of the stent. A support apparatus may contact only the proximal ends of the stent. The method may involve keeping the stent in motion during a spray coating process to prevent the stent from having a point remain in continuous contact with a support apparatus.
Abstract:
A method for producing a coated material having an oxidizable metal-containing coating, including the step of applying to a base material (11) an oxidizable metal-containing coating fluid containing a particulate oxidizable metal, a carbon component, a thickener, and water using a coating apparatus (1) and a coating fluid preparation step in which a thickener solution prepared by dissolving the thickener in water, the particulate oxidizable metal, and the carbon component or an aqueous dispersion of the carbon component are put and mixed in a preparation tank (3) to prepare the oxidizable metal-containing coating fluid. In the coating fluid preparation step, the particulate oxidizable metal is added to the thickener solution. The coating apparatus (1) includes a relay tank (4) capable of temporarily storing the coating fluid to be fed from the preparation tank (3) to a coating unit (5), so that the oxidizable metal-containing coating fluid in the preparation tank (3) is fed to the coating unit (5) through the relay tank (4).
Abstract:
The invention relates, inter alia, to a device for applying a plurality of threads of a fluid, such as adhesive or lotion, to a moving web-like substrate, having a plurality of outlet openings for the threads of fluid, wherein each outlet opening is disposed between a pair of flow openings, through which a flow fluid, in particular compressed air, flows in order to achieve thread oscillation. The special feature consists, inter alia, in that the outlet openings are disposed along a curved path.
Abstract:
A discharge surface treatment apparatus generates a pulsed discharge between poles, that is, between a discharge electrode and a workpiece, and the discharge electrode is obtained by compression-molding of any one of a metal powder, a powder of a metal compound, and a powder of ceramics or a mixture thereof. The apparatus forms a film made of an electrode material or the like on a workpiece surface by thermal energy due to the discharge. The apparatus includes: a capacitor that is connected to any one of the discharge electrode and the workpiece at one end; and a parallel circuit of a resistor and a diode, which is provided between another one of the discharge electrode and the workpiece and another end of the capacitor via a connection line.
Abstract:
Provided is a curtain coating machine, including at least: a curtain coating member including a discharging port from which a coating liquid is discharged in a curtain shape; a discharging width regulating member provided in the discharging port and regulating the discharging width of the coating liquid discharged in a curtain shape; a drop-off preventing member preventing the discharging width regulating member from dropping off from the discharging port; a fixing member fixing the drop-off preventing member; a close contact member movable on the fixing member and closely contacting the drop-off preventing member, and via the drop-off preventing member, preventing the coating liquid from leaking in a discharging direction from where the discharging width regulating member is provided in the discharging port; and a guide member provided detachably on the fixing member and guiding width-direction both edges of the coating liquid discharged from the discharging port in a curtain shape.
Abstract:
A curtain coating device for paper and board machines has a nozzle beam (10) with a nozzle lip (12) with an edge strip (11) for feeding the coating color curtain and edge guides (20) located along each edge of the nozzle lips (12) controlling the width of the coating color curtain. The edge guide (20) has upper and lower ends. Flow surfaces (22) extend in a substantially vertical direction parallel and next to each other. The edge guide has a lubrication feed (24), additional lubrication feeds (26) and a suction opening (27). The flow surfaces (22) are inclined toward each other forming a flow guide recess (25) which extends in a vertical direction such that the form of the flow surfaces (22) with the flow guide recess (25) is concave. A protrusion (21) extends within the recess in the direction of the flow guide recess (25).
Abstract:
A rod-bed assembly has a holder (30) with a groove (31) into which an insert (20) is removably and insertably supported. The assembly has a rod (10) which is rotatably supported in a recess (21) on the front side of the insert (20). The material thickness (T) of the cross-section of the insert (20) is between 1-5 mm. The invention also relates to a rod -rod-bed assembly.
Abstract:
The invention relates to a treatment arrangement for ferromagnetic parts, particularly screws and nuts, comprising at least a treatment wheel having at least one magnet for holding the ferromagnetic parts on the circumference of the treatment wheel, a feed apparatus for feeding the ferromagnetic parts to the treatment wheel and for placing the ferromagnetic parts on a first circumference line of the treatment wheel, a treatment apparatus for treating the ferromagnetic parts, and a discharge apparatus for removing the ferromagnetic parts from the treatment wheel, and is characterized in that the treatment wheel comprises at least one further circumference line for holding the ferromagnetic parts, and that the treatment arrangement furthermore comprises means for transferring the ferromagnetic parts from the first circumference line of the treatment wheel to a second adjacent circumference line of the treatment wheel.