Abstract:
An apparatus for coating stent is disclosed. The apparatus can be used to coat multiple stents or a large number of stents simultaneously. The apparatus includes a chamber that can be rotated or tumbled during the application of a coating substance to the stents.
Abstract:
A method of performing dip coating of a layer of a resist material on a surface of a substrate, comprising steps of: (a) providing a dip coating vessel having an interior space containing a dip coating liquid comprising a solution of the resist material in a solvent, the dip coating vessel being open at the top thereof; (b) providing a substrate having a surface, immersing the substrate in the dip coating liquid in the vessel via the open top, and withdrawing the substrate from the vessel via the open top thereof, thereby forming a layer of resist material on the surface; and (c) monitoring and maintaining the viscosity of the dip coating liquid supplied to the dip coating vessel at a predetermined value. Also disclosed is an apparatus for performing the method.
Abstract:
A coating apparatus having a fluid circulating system wherein the fluid ascending in a dipping container overflows an overflow edge disposed at the top of the dipping container into an overflow-fluid receiving container and returns from the bottom of the overflow-fluid receiving container into the dipping container, wherein the dipping container has a depth of null to null of the internal diameter thereof. When the dipping container is too deep, the powder or the like tends to be compressed tightly in the upper part of the dipping container, often impeding efficient insertion of a substrate, but the coating apparatus according to the present invention, the dimension thereof being specified as above, keeps favorable fluidity of the powder or the like.
Abstract:
A method and apparatus for applying a fluid preservative to wood or wood products has a work tank for maintaining a predetermined concentration of preservative in the fluid. The work tank is equipped with a heater to keep the temperature of the fluid and the preservative in the work tank at a predetermined level. Hot fluid and preservative is drawn under a vacuum, initially from the work tank. On filling a pressure vessel, a pressure pump then supplies the preservative and fluid mixture under pressure to the pressure vessel in which the wood or wood product is being treated. As the treatment process depletes the preservative in the fluid, through absorption in the wood, the depleted fluid is circulated back to the work tank where it is heated and more preservative is added to restore the concentration of preservative in the fluid to a desired level. The fluid, replenished with preservative, is then pumped into the pressure vessel. In this way a more uniform distribution of preservative in a desired concentration is achieved in the treated wood or wood product.
Abstract:
The present invention relates to a web handling apparatus and process ideally suited for applications involving wet chemistry. The invention involves the horizontal processing of webs in processing containers. The web is redirected into the processing container by inserting a cassette across the web and into the processing container. The cassette includes at least one functional fluid element that facilitates processing of the web. The web handling practices of the invention improve the quality of the processed web. The invention is preferably used in electrodeposition processes.
Abstract:
The device for surface coating of small parts is comprised essentially of a device (10) with sequentially arranged processing stations, namely a dip station (11), a drip station (12), a centrifuge station (13) and an emptying station (14). The drums (1) filled with small parts are conveyed from station to station via a longitudinal conveyor (27). Each station has its individual drive, with which the drums (1) can be brought into rotation. The drums are comprised of half shells (2) and (3), which are axially slideable relative to each other, which are opened for filling and closed during processing.
Abstract:
An apparatus and methods for applying a coating to an implantable device. The implantable device can include depots formed in the outer surface thereof to receive the coating. The coating can include a polymer and a solvent applicable to the surface of the implantable device including the depots. The application of the composition is performed under a pressure, which can reduce the surface tension and/or molecular adhesion force of the composition. The reduced surface tension and/or adhesion force allows gas bubbles within the depots to be removed while the composition is being driven into the depots.
Abstract:
In electric plating of supplying a current between an anode electrode and a cathode electrode as a plated body immersed in a plating solution thereby forming a plated film comprising a conductor on a surface of the cathode electrode, a preliminary electrolytic electrode that comes in contact with the plating solution before the cathode electrode comes in contact with the plating solution is disposed, and the cathode electrode is brought into contact with the plating solution while supplying a preliminary electrolytic current between the preliminary electrolytic electrode and the anode electrode, whereby a uniform plated film with no voids can be formed while suppressing dissolution of the underlying conductive film in the electric plating treatment.
Abstract:
The coating device for coating a metal band (12) in a melt (14) of a non-magnetic metal comprises a shaft (16) rotatable in the melt (14) for guiding the metal band (12). The shaft (16) is supported in a shaft bearing (261) that is a magnetic bearing whose stationary portion (281) is encapsulated. Thus, a contactless shaft support in a metal melt is obtained, whereby the bearing wear is largely reduced and the service life of the bearing is prolonged.
Abstract:
Apparatus for securing a substrate in an electrochemical deposition system are provided. In one aspect, an apparatus is provided for securing a substrate in an electrochemical deposition system having a contact ring for contacting a plating surface of the substrate, a thrust plate having an annular shoulder at least partially formed therein, the thrust plate adapted to move axially relative to the contact surface, and a flexible seal disposed on the thrust plate comprising a base portion for attaching to the annular shoulder of the thrust plate and a body portion extending outwardly from the base portion and defining a sealing surface for engaging a back surface of the substrate. The apparatus may be disposed in an electrochemical deposition system.