B05C5/0237

LIQUID DISPENSING SYSTEM WITH PRESSURIZED AIR OPERATED LIQUID CONTROL PISTONS
20220072569 · 2022-03-10 ·

A modular liquid distribution system in which each module has a module body, a spray nozzle, and a piston for controlling the dispensing of liquid from the nozzle. Each module has a pneumatically operated system for moving the piston to an open position while facilitating quicker return movement to a closed position, enabling the dispensing of precisely controlled small droplet sized quantities of highly viscous liquids.

DEVICE FOR APPLYING A PRODUCT, MACHINE INCLUDING SUCH A DEVICE AND METHOD FOR CONTROLLING SUCH A MACHINE
20220072579 · 2022-03-10 ·

Device for applying a product, including a frame in which a product conduit is provided, the frame defining a longitudinal bore, the device including a needle mounted in the longitudinal bore, the device including a product application valve formed by a nozzle provided on the frame and a shutter provided at an end of the needle in the product conduit. The needle is configured to be moved along a longitudinal axis between a closed position and an open position of the dispensing valve. The device includes a stop fixed in relation to the needle, and a stop fixed in relation to the frame, configured to limit the return of the needle towards its closed position to an intermediate position between the closed and the open position, by interaction with the stop fixed in relation to the needle, and the stop fixed in relation to the frame has an adjustable position.

NOZZLE AND APPLICATOR SYSTEM FOR FABRIC BONDING
20210323242 · 2021-10-21 ·

Nozzle assemblies and methods of bonding fabric by jetting an adhesive are disclosed. A method of bonding fabrics with an adhesive includes receiving the adhesive from an adhesive supply into a nozzle assembly. The nozzle assembly has a valve seat, a valve stem configured to slidably move towards and away from the valve seat, and a plurality of outlet channels. The method further includes jetting the adhesive from the plurality of outlet channels onto a first fabric and applying a second fabric to the first fabric to adhere the first and second fabrics to each other.

JET DOSING VALVE
20210318155 · 2021-10-14 ·

A dosing valve is provided for ejecting a liquid from a nozzle outlet channel. The dosing valve has a main body, a valve actuating element movable within the main body, and a valve closure element connected to or actuatable by the valve actuating element. The valve closure element is movable within a dosing chamber between an open position, in which it is lifted off from a nozzle sealing seat, and a closed position, in which it lies against the nozzle sealing seat. For the pneumatic activation of the dosing valve, a switching valve is provided by means of which a working chamber of the dosing valve can be selectively ventilated or charged with a pressurized fluid.

Suck back type intermittent coating system
11130147 · 2021-09-28 · ·

A suck back type intermittent coating system including a valve mechanism, a valve manipulating mechanism, and a solenoid valve for controlling the operation of the valve manipulating mechanism; and a control device that inputs therein a pulse signal indicative of the travel state (travel speed, etc.) of a base material traveling along a coating line, and outputs an electrical command to the solenoid valve. A displacement sensor for detecting a displacement of the movable valve body of the valve mechanism is provided so that the operation of the valve manipulating mechanism is remotely controlled by a command signal to the solenoid valve; and with a computer having a feedback function that issues a correction signal to the operation of the solenoid valve confirmation and tally of the operation of a coating gun module is performed even when away from a production line.

Liquid material discharge device, and application device and application method therefor
11110481 · 2021-09-07 · ·

A liquid material discharge device and method capable of remedying the problem of liquid leakage caused by a closing failure that may occur in a negative pressure environment. The liquid material discharge device is used in a negative pressure space, and includes a storage container, a compressed-gas supply source pressurizing the storage container, a nozzle having a discharge flow path, a reciprocating valve rod, an actuator driving the valve rod, a valve seat having a communication hole that is communicated with the discharge flow path, and a discharge control device controlling the actuator to open and close the communication hole by a tip of the valve rod. The device can further include a resin film disposed at a lower end of the valve rod, or a resin film disposed on an upper surface of the valve seat and having a through-hole communicating with the communication hole.

LIQUID MATERIAL DISCHARGE DEVICE, AND APPLICATION DEVICE AND APPLICATION METHOD THEREFOR
20210220863 · 2021-07-22 · ·

A liquid material discharge device and method capable of suppressing generation of bubbles caused with a rod raising operation in a negative pressure environment. In a liquid material discharge device used in a negative pressure space and including a storage container; a compressed-gas supply source pressurizing the storage container; a nozzle having a discharge flow path; a reciprocating valve rod; an actuator driving the valve rod; a valve seat having a communication hole that is communicated with the discharge flow path; and a discharge control device controlling the actuator to open and close the communication hole by a tip of the valve rod, the discharge control device controls an acceleration time A.sub.u in rising of the valve rod by the actuator to be held within a range of 2 to 300 [ms], thus preventing generation of bubbles caused with the rising of the valve rod.

System, method, and apparatus for hot melt adhesive application
11065640 · 2021-07-20 · ·

A hot melt adhesive applicator with one or more air outlets configured to direct a pressurized heated air stream transversely toward hot melt adhesive discharged through a discharge port of the applicator. A controller can switch between two modes, a discharge completion mode where the heated air stream pressure is temporarily increased to automatically eliminate or reduce hot melt adhesive stringing and an application mode where the heated air stream assists in heating or maintaining the hot melt adhesive at or above melt temperature.

Methods for delivering glutinous substance to workpiece from end-effector

A method of delivering a glutinous substance to a workpiece from an end-effector comprises using the end-effector to position an applicator relative to the workpiece. The method also comprises urging the glutinous substance from the end-effector through a first channel of a body of the applicator from an inlet of the first channel toward an outlet of the first channel. The method additionally comprises selectively operating an actuator of the applicator to regulate a rate, at which the glutinous substance flows through the first channel of the body of the applicator, responsive to, at least in part, output received from a sensor of the applicator.

SUCK BACK TYPE INTERMITTENT COATING SYSTEM
20210129172 · 2021-05-06 · ·

A suck back type intermittent coating system including a valve mechanism, a valve manipulating mechanism and a solenoid valve for controlling the operation of the valve manipulating mechanism and a control device that inputs therein a pulse signal indicative of the travel state (travel speed etc.) of a base material traveling along a coating line, and outputs an electrical command to the solenoid valve. A displacement sensor for detecting a displacement of the movable valve body of the valve mechanism is provided so that the operation of the valve manipulating mechanism is remotely controlled by a command signal to the solenoid valve; and with a computer having a feedback function that issues a correction signal to the operation of the solenoid valve confirmation and tally of the operation of a coating gun module is performed even when away from a production line.