Abstract:
The invention relates to a mask for a coating system having a covering device for an area not to be coated of a substrate to be coated, having a working side exposed to the material flow of the coating material, wherein the covering device for the area not to be coated is comprised of at least one disk that can be rotated, the disk upper side of which is positioned vertically to the material flow of the coating material. A further aspect of the invention includes a thermal and/or kinetic coating system having at least one spray device, and a corresponding method for producing a coated substrate.
Abstract:
A manufacturing facility is provided for manufacturing a product on a foil (FO). The manufacturing facility comprises a deposition zone (10) formed by a clean room wherein at least a first and a second deposition facility (21, 22) are arranged for depositing a layer of a material on the foil. The manufacturing facility further comprises at least one processing facility (31) for processing the deposited layer, said processing facility being arranged outside said deposition zone and comprising a processing trajectory with a first path (31a) away from said deposition zone, towards a turning facility (41) and with a second path (31b) from said turning facility back towards said deposition zone.
Abstract:
A device for coating an exterior of an elongate object includes a housing structure with an elongate chamber having first and second opposite ends. A port communicates with the first end for receiving the elongate object and an outlet is located at the second end. An air supply passage and a coating material supply passage communicate with the elongate chamber. Pressurized air and coating material are adapted to enter the elongate chamber through the air supply passage and the coating material supply passage, respectively, to form a mist in the elongate chamber moving toward the outlet while coating the exterior of the object. A method of coating an exterior surface of the elongate object with the coating material includes holding the elongate object lengthwise in the elongate chamber, mixing the pressurized air and the coating material to form a mist, and coating the exterior surface while directing the mist around the exterior surface and toward the outlet of the elongate chamber.
Abstract:
A device for coating dry powder microparticles onto a surface may include a jet mill configured to mill dry powder particles into microparticles having a desired aerodynamic diameter and to deaggregate the microparticles, a feed hopper structured and arranged to feed dry powder particles to the jet mill, a surface configured to receive dry powder microparticles and an exit nozzle associated with the jet mill. The exit nozzle may be arranged to direct deaggregated micronized dry powder particles from the jet mill to the surface to be coated. The device may further include a holder structured and arranged to hold an item, wherein the item includes the surface. In some aspects of the device, the item may be a film.
Abstract:
A rolling spray applicator has a low profile so that it can be utilized between closely spaced upper and lower surfaces so that a spray coating can be applied thereto simultaneously. The spray applicator includes an elongated spray bar including a plurality of nozzles on upper and lower surfaces thereof. A fluid supply is connected to the elongated spray bar. A frame supports the elongated spray bar and includes a plurality of wheels for rollingly supporting the frame. A handle is attached to either one of the frame or the elongated spray bar so that the device can be rolled between closely spaced upper and lower surfaces for applying a spray coating thereon.
Abstract:
An apparatus and method for supporting a tubular medical device, such as a stent or scaffold, includes a rod disposed between two collets. The rod can be shaped to form a range of different size or length helical supports to support a wide range of tubular medical devices. The rod is shaped into a full or partial helix by rotating one of the collets relative to the other.
Abstract:
A device for coating an exterior of an elongate object includes a housing structure with an elongate chamber having first and second opposite ends. A port communicates with the first end for receiving the elongate object and an outlet is located at the second end. An air supply passage and a coating material supply passage communicate with the elongate chamber. Pressurized air and coating material are adapted to enter the elongate chamber through the air supply passage and the coating material supply passage, respectively, to form a mist in the elongate chamber moving toward the outlet while coating the exterior of the object. A method of coating an exterior surface of the elongate object with the coating material includes holding the elongate object lengthwise in the elongate chamber, mixing the pressurized air and the coating material to form a mist, and coating the exterior surface while directing the mist around the exterior surface and toward the outlet of the elongate chamber.
Abstract:
The coating device according to the invention for a workpiece comprises a flow channel which has an opening for the workpiece, through which the workpiece protrudes at least partially into the interior of the flow channel during the coating. In addition, a spraying device is provided, which is arranged in such a way that coating material can be sprayed into the interior of the flow channel by means of the spraying device. Furthermore, the coating device comprises a flow generator, which is arranged and can be operated in such a way that the flow generator produces in the flow channel a flow (L1, L2) directed in the longitudinal direction (LA) of the flow channel.
Abstract:
A support device is provided to hold a pre-mounted device, such as a stent mounted on a balloon of a delivery catheter, for insertion in a coating apparatus. The support device stabilizes, aligns and holds the pre-mounted stent assembly in order to allow correct location and rotation in relation to a coating applicator in a coating apparatus and to avoid damage during the coating process.
Abstract:
A method and apparatus for spreading a treating agent, for example, size or a coating onto a moving surface in the manufacture of the web-shaped folios or paper and paperboard and various sheet products in particular, includes feeding the treating agent into at least one feeding chamber and directing the agent from the feeding chamber onto the moving surface. Jets are formed from the treating agent by directing the agent through at least one nozzle plate comprising openings that are defined by the nozzle plate around the entire periphery, and the formed jets are applied directly onto the moving surface.