Abstract:
An apparatus for melting and dispensing thermoplastic material is provided that includes an un-heated hopper having an inlet for receiving particles of a thermoplastic material and an outlet for discharging the particles and a heated manifold including at least one cavity formed therein and having an inlet and an outlet the inlet communicating with the outlet of the hopper for receipt of the particles from the hopper. The hopper is disposed external of the heated manifold. The heated manifold is effective for melting the particles into molten thermoplastic material therein. The apparatus further includes a pump having an inlet in fluid communication with the cavity. An outlet of the pump is in fluid communication with an inlet of a dispenser and an outlet of the dispenser is effective for dispensing the molten thermoplastic material therethrough.
Abstract:
A continuous coating supply system includes a first coating storage unit, a second coating storage unit, a coating intake, a coating outlet, conduits and a plurality of valves. The conduits connect the first storage unit, the second coating storage unit, the coating intake and the coating outlet and are positioned on the conduits. The control unit is respectively connected to the first storage unit and the second storage, to determine a volume of coating in the first storage unit and the second storage unit, thus deciding to opened and close the valves. The pressure unit is respectively connected to the first storage unit and the second storage unit, to apply air pressure to the first coating storage unit and the second coating storage unit.
Abstract:
The present invention provides an adhesive application apparatus that can form a uniform application layer when applying an adhesive to an end face of a sheet bundle by an application roller even though a length or a width of the sheet bundle is not less than or not greater than a predetermined size, and a liquid amount in an immersed coating layer formed between the surface of the application roller and the application surface of the sheet bundle can be adjusted by increasing or decreasing based on an application length and/or an application width of the sheet bundle. Therefore, level adjusting means for adjusting a liquid surface level in an equipped accommodating chamber including an application roller to increase or decrease is provided in a glue container. This level adjusting means increases the liquid surface level above a predetermined value by resupplying a solid adhesive to the glue container, or is configured to enable adjusting a position of a reflux amount restricting member that restricts (stems) an adhesive amount refluxed along the surface of an application roller, or configured to enable moving an occupied position of an accommodated liquid capacity adjusting member that adjusts an allowable accommodation amount of the adhesive in the accommodating chamber.
Abstract:
A device for applying adhesive to a substrate from a liquid container containing the adhesive contains at least one pressure tank that can be temporarily connected to the pressure tank by means of a changeover valve in order to apply a pressure pulse to the liquid container, and a control unit for controlling the changeover valve and regulating the pressure prevailing in the pressure tank. In accordance with the invention, the device is equipped with a sensor the output signal of which indicates the liquid level of the liquid container. The sensor comprises a sound transducer, a sound transformer and an electronic circuit for operation of the sound transducer and for analyzing the signal delivered by the sound transformer. The sensor measures the frequency of the alternating electrical signal applied to the sound transducer with which a standing sound wave occurs in the liquid container. The control unit adjusts either the level of the pressure prevailing in the pressure tank or the length of the pressure pulse subject to the output signal from the sensor.
Abstract:
A fluid application device stores seam paste in a reservoir tank 18 and feeds the seam paste to a pressure tank 20 through a feed pump 22. Inside of the pressure tank 20 is maintained under a given air pressure by a pneumatic unit 26, and the seam paste is supplied from the pressure tank 20 to an application nozzle 16 through a supply pipe 24. A level sensor 28 detects fluid level of stored seam paste in the pressure tank 20, and a detection signal is input to a controller 30. The controller 30 controls operation of the feed pump 22 based on the detection signal that is transmitted from the level sensor 28 and also controls a supply amount of the seam paste to the pressure tank 20 to maintain the fluid level in the pressure tank 20 at a fixed level.
Abstract:
A system for dispensing a viscous material onto a substrate which includes a dispensing element, a viscous material reservoir and a metering device coupled between the reservoir and the dispensing element for metering a variable amount of a viscous material through the dispensing element. The dispensing element and metering device can be moved by a positioner along a predetermined pattern adjacent a surface of a substrate. A weigh scale located adjacent the substrate receives a metered amount of the viscous material and produces signals representative of a variable weight of the material dispensed during a predetermined time interval. A controller adjusts a speed of movement of the positioner along the predetermined pattern to cause the dispensing element to dispense a desired amount of material based on a calculated flow rate. Alternatively, the controller adjusts a rate of delivery of the metering device based on the calculated flow rate to cause the dispensing element to dispense the desired amount of material along the predetermined pattern. Closed loop temperature control may be provided for the dispensing element and/or the substrate to ensure a substantially constant viscosity and a substantially constant flow rate. A prime and purge station may be provided adjacent the substrate for sucking air bubbles from the dispensing element and metering device.
Abstract:
The automated system includes a fluid dispenser having an applicator tip which is used to apply a fluid to an object. A compliance mechanism is utilized to assist in maintaining the applicator tip of the fluid dispenser in contact with the object during the coating operation. A robot can be utilized to advance the object past the applicator tip during the coating operation. The fluid dispenser is mounted on a movable arm to allow the fluid dispenser to be moved or rotated into and away from the position where fluid is applied to the object. The automated system provides a fluid application system that can apply a precise and repeatable layer of fluid. to an object. The use of the robot allows larger objects to be easily handled and for the coating process to be done in a rapid fashion. The automated system is flexible and can readily accommodate changes in the object that is to be coated or the configuration of the coating that is to be applied to the object.
Abstract:
A can component (3) is coated with a coating material (2) in a manner which involves determining the number of can components to which the coating material is applied, determining the total amount of coating material applied to the can components, and determining, on the basis of the number of can components and the total amount of coating material applied, the average amount of coating material applied to each can component. In this way it is possible to determine whether the correct amount of coating is being applied to the can components.
Abstract:
A method and assembly for coating a moving web of paper or paperboard by means of a coating mix jet which is directed to the surface of the web without mechanical support. The present invention is based on applying a desired amount of the coating mix to the web via a narrow-gap slit orifice, and by measuring the coat weight on the web, adjusting the position of at least one lip of the slit orifice to achieve the desired weight and cross-machine profile of the applied coat.
Abstract:
A process solution supplying mechanism for supplying a process solution to a wafer, comprises a source for containing the process solution, a pipe for introducing the process solution from the source to the wafer, a process solution supply driving system for supplying the process solution from the source to the wafer, and a process solution supplying/stopping mechanism for carrying out apply and stop of the process solution, wherein the pipe and the process solution supply driving system are provided separately and the process solution supplying/stopping mechanism is provided to a portion other than the pipe.