Abstract:
A mixing apparatus is configured to efficiently input noodles coated with an additive to a receiving tray, with no need to perform weighing again after the noodles are input to the receiving tray. The mixing apparatus includes at least two hoppers that each house falling noodles and that allows the noodles to fall through rotation of the hoppers. A supply device supplies a sauce to the noodles in the hoppers, and the two hoppers are spaced from one another in the falling direction.
Abstract:
A method for producing a hot-dip aluminum-coated steel wire, including dipping a steel wire in molten aluminum, and drawing up the steel wire from the molten aluminum, wherein at the time of drawing up the steel wire from the molten aluminum, a stabilization member is contacted with a surface of the molten aluminum and the steel wire at the boundary between the steel wire and the surface of the molten aluminum, a nozzle having a tip end of which inside diameter is 1 to 15 mm is disposed so that the tip end is positioned at a place away from the steel wire by a distance of 1 to 50 mm, and an inert gas having a temperature of 200 to 800° C. is blown out from the tip end to the boundary at a volume flow rate of 2 to 200 L/min.
Abstract:
The present invention provides a system for manufacturing a therapeutic microneedle configured to regulate an air environment within a coating chamber for manufacturing a therapeutic microneedle by coating a microneedle with a coating liquid containing a drug, the system for manufacturing a therapeutic microneedle comprising an air compressor, a humidity regulator configured to regulate humidity of air supplied from the air compressor, and an air filter configured to eliminate microorganisms from air to be supplied to the inside of the coating chamber.
Abstract:
A protection device (1) for protecting a portion to be protected of a part, the device comprising a separable body (2) that can be separated into at least two sub-elements (4, 5), each sub-element (4, 5) having a cavity (6, 7) for receiving at least partially the portion to be protected of the part, the device having holding means (4.11, 4.12, 4.21, 4.22, 5.11, 5.12, 5.21, 5.22) for holding the sub-elements (4, 5) in position relative to one another, and at least one of the sub-elements (4, 5) having a fraction of its cavity (6, 7) that is provided with a surface (30, 31) that opposes relative sliding between the protection device (1) and the portion to be protected of the part.
Abstract:
A method for transferring objects onto a substrate, or running substrate, the objects to be transferred being placed in a transfer area containing a carrier liquid forming a conveyor, the objects being held by a compact film of particles floating on the carrier liquid of the transfer area, within which the objects are displaced with the film of particles to be transferred onto the substrate, making at least one connector on at least one of the objects, the connector being made by a substance comprising a polymerizable compound, put in contact with the object arranged within the transfer area, and then by polymerization of the substance.
Abstract:
The invention relates to a method for coating a catalyst support body, which comprises: providing the catalyst support body as well as slurry located within a pan; introducing an open input end of the catalyst support body into the slurry; and, subsequently, directing an amount of the slurry though the input end and into the inside of the catalyst support body. At least a part of the circumference of the input end is covered with an impermeable sealing element while slurry is directed through the open end. In this way, contact between slurry and a circumferential outer surface of the catalyst support body is prevented and slurry is provided through the open end to an inner surface of the catalyst support body. Further, the invention relates to a loading platform for carrying out the method. The inventive assembly comprises a loading platform adapted for releasably holding a catalyst support body, and a cover mechanism having a sealing holder and a ring shaped sealing element attached to the sealing holder. The cover mechanism further comprises a first lifting mechanism connected to the sealing holder, wherein the first lifting mechanism provides a moving direction for the sealing holder along a longitudinal axis of the sealing element relative to the loading platform. In addition, the invention relates to a coating station comprising the loading platform. The coating station comprises a slurry pan and a second lifting mechanism providing a relative moving direction between the pan and the loading platform. The first lifting mechanism is synchronized with the second lifting mechanism by a synchronization device.
Abstract:
A disinfectant system for intracavity ultrasound probes in disclosed generally including a housing, a disinfectant chamber positioned in the housing and receiving at least one ultrasound probe, a container for containing a disinfectant solution fluidly coupled to the disinfectant chamber, at least one pump for supplying the disinfection solution from the container to the disinfection chamber and from the disinfection chamber to the container, and a controller for automated operation of the disinfectant system, wherein the disinfectant solution is a multi-use disinfectant solution. A method for disinfecting intracavity ultrasound probes is also disclosed generally including placing at least one ultrasound probe into a disinfectant chamber, supplying a disinfectant solution from a container to the disinfectant chamber via a pump, and returning the solution to the container via the pump, wherein the steps of supplying and returning the disinfectant solution are controlled by a controller.
Abstract:
A coater is provided for coating objects with a liquid material. The coater includes a flume that has an entry and an exit end, a supply of liquid coating material upon which the objects float, and a circulation system. The circulation system delivers the liquid material to the entry end of the flume so that the liquid material flows toward and out the exit end. The coater also includes a conveyor that loads the objects into the flume and a conveyor that receives the objects at the exit end of the flume.
Abstract:
A lubricant applicator system for electronic connector pins is designed to uniformly apply a lubricant to the pins to reduce the force necessary to install and extract a circuit board in the motherboard. The system includes a reservoir tank which supplies lubricant to a container into which electronic pins of an assembled connector are immersed, with holes disposed on the bottom surface of the container such that the lubricant enters the container via the holes and rises within the container to a certain height which is controlled by an elbow valve, thereby coating only a predetermined length of the electronic pins with lubricant.
Abstract:
A method and an apparatus for fabricating gravure printing cylinders of synthetic resin in which a photosetting polyamide resin used as a solution of a coating resin is applied over the surface of a cylindrical base spirally as successively overlaid layers and thereafter the applied resin is subjected to drying by a heater and to photosetting by irradiation with ultraviolet rays, electron rays or the like. The resin layer surface thus obtained is mechanically engraved by an electronic engraver for forming gravure cells. The irradiation of ultraviolet ray, electron ray, or the like may be effected during or after application of the polyamide resin over the cylindrical base. The apparatus comprises a resin solution retainer closely adjacent to the cylindrical base. A substantially vertical lever pivoted for movement toward and away from the base supports the solution retainer. The lever may be moved by an element such as a motor-driven eccentric cam.