Abstract:
L'invention concerne un dispositif (11) d'application de matériau abradable, destiné à l'application de matériau abradable sur une surface d'un carter annulaire (1) de turbomachine, le carter s'étendant suivant un axe longitudinal le dispositif (11) comportant un support (12, 13) équipé de premiers moyens de guidage (14) aptes à guider le support (12, 13) par rapport à un carter (1), selon une direction radiale par rapport à l'axe du carter, le support (12, 13) étant équipé de seconds moyens de guidage (16) aptes à guider le support (12, 13) par rapport au carter (1) selon une direction axiale, un rouleau d'application (20) étant monté pivotant par rapport au support (12, 13) selon la direction axiale, des moyens de réglage (22, 23) permettant d'ajuster la position du rouleau (20) par rapport aux premier moyens de guidage (14), selon la direction radiale.
Abstract:
Die Erfindung betrifft einen Lackierroboter (1) zur Lackierung von Kraftfahrzeugkarosserien mit zu lackierenden Außenflächen an der Außenseite der Kraftfahrzeugkarosserien und zu lackierenden Innenflächen im Innenraum der Kraftfahrzeugkarosserien mittels eines von dem Lackierroboter (1) geführten Zerstäubers (7). Die Erfindung sieht vor, dass der Lackierroboter (7) sowohl zur Lackierung der Außenflächen als auch zur Lackierung der Innenflächen der Kraftfahrzeugkarosserien geeignet ist. Weiterhin betrifft die Erfindung ein entsprechendes Betriebsverfahren.
Abstract:
The invention relates to equipment for making a pack tray comprising a body with a strip of side walls, said body comprising an outer envelope (1) lined on the inside with an added sealed plastic film. The equipment includes at least one station (2) provided with means for applying glue on a portion at least of the of the inner surface of the side wall strip (1b) of the outer envelope (1), also called gluing area (10), before placing a plastic film. The gluing pads (5) include at least one block of a porous material (5b) that can, one the one hand, be filled with glue by loading means (7) through a diffusion phenomenon, and that can on the other hand deposit glue by contact optionally combined with a compression force on a gluing area (10). The pad (5) is mounted on a bearing structure (4) via means (6) for handling it between an expanded position in which the pad (5) contacts the gluing area (10) for applying glue thereon and a folded position in which said gluing pad (5) is remote from the outer envelope (1) of the pack tray.
Abstract:
A device for uniformly applying paste, which applies a noble metal paste on the inner surfaces of parts such as electronic parts in a desired configuration. The device is constituted of a mount (10) for mounting thereto parts (2, 8) to be coated with a paste, a nozzle (16) for supplying the paste, a delivery member (21) which covers the tip end of the nozzle (16), delivery ports (22) extending through the nozzle (16) and the delivery member (21), means for adjusting a spacing (h) between the surface of the delivery member and the surface of each part to be coated with the paste to 10 to 100 mu m, means for delivering the paste with such spacing kept, and means for moving the parts and the nozzle relative to each other with the spacing maintained while the paste is delivered. Since a predetermined amount of paste is delivered to the parts with the spacing maintained, a paste film having an exceedingly uniform thickness can be formed on the surfaces of the parts. Accordingly, it is possible to form an electrode film of good quality which is uniform in terms of resistance performance and electric conductive performance and is provided with a metallic film of an exceedingly uniform thickness formed after drying and baking. As noble metals such as platinum are extremely expensive, limiting the electrode thickness can minimize the amount of a noble metal used and thus contribute to reduction in electronic part unit price.
Abstract:
A system for treating a component of a wastewater system, comprising a foam dispenser unit, and a control system for controlling operation of the foam dispenser unit, wherein the foam dispenser unit dispenses a foaming treatment composition comprising a foaming agent and at least one biological agent, onto surfaces of the wastewater system component.
Abstract:
The present invention concerns a method of applying a coating (11, 12) to a glass sleeve (3) with an inner surface (5) and an outer surface (7), which glass sleeve (3) is realized as a part of a solar-receiver tube (1). Thereby, the coating (11, 2) is solely applied to one of the said surfaces (5, 7) of the glass sleeve (3). The invention also concerns such glass sleeve (3) a method of fixing such glass sleeve (3) in an interior of a coating tank, such coating tank (35) and a fixing arrangement (28) for fixing such glass sleeve (3) in an interior of a coating tank (35).
Abstract:
A superhydrophobic surface includes a plurality of microfeatures disposed on a substrate and a gas generator disposed within the microfeatures, the gas generator configured to generate a gas within the microfeatures. Gas is generated within the microfeatures when at least a portion of the microfeatures is in a wetted state to restore the microfeatures to a dewetted state. Gas generation is self-regulating in that gas generation automatically starts when a wetted condition exists and stops when sufficient gas has been generated to recover a dewetted state that restores superhydrophobicity.
Abstract:
Methods for coating medical devices ( 12; 22) for implantation within a body vessel include providing a cylindrical container (32), placing a medical device ( 1 2; 22) inside the cylindrical container (32), and applying a polymer in liquid form inside the container (32). The polymer may be applied to a luminal surface and/or to an abluminal surface of the medical device. An apparatus for coating a medical device includes a lumen rotator (30), including rollers (34) for rotating a cylindrical container (32), a source of polymer (36) and an applicator (38) for applying polymer inside the cylindrical container (32).
Abstract:
A system for conserving hollow spaces of metallic objects, in particular car bodies, by means of a corrosive material liquid during processing, has at least one anticorrosive agent reservoir and a collecting basin for excess anticorrosive agent that drips from the hollow space to be conserved. The object with hollow spaces to be conserved may be arranged above the collecting basin, and to reduce investment and operation costs the collecting basin is arranged on the reservoir.