Smart solenoid compound gun driver and automatic calibration method

US9238242B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9238242-B2
Application numberUS-201414307915-A
CountryUS
Kind codeB2
Filing dateJun 18, 2014
Priority dateMay 15, 2012
Publication dateJan 19, 2016
Grant dateJan 19, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A device for calibrating a spray gun and an associated method are provided. The spray gun has a nozzle that is opened and closed by moving an internal needle out of and into sealing engagement with the nozzle. A virtual position of the needle is tracked and recorded by the control system. The control system is recalibrated when the virtual position and the actual position of the needle do not correspond. The device includes a sensor structured to detect characteristics of the current used to power the solenoid, and to identify an anomaly in solenoid current characteristics associated with an actuator member seating against said solenoid. During calibration, the solenoid is placed in a calibration configuration and the identifiable anomaly is detected. When the identifiable anomaly is detected, the spray gun is returned to an initial configuration and the virtual needle position is reset.

First claim

Opening claim text (preview).

What is claimed is: 1. A system for calibrating needle lift in a spray gun assembly, said spray gun assembly having a housing and an operating mechanism, said housing defining at least a fluid chamber, said fluid chamber having a fluid inlet and a nozzle, said fluid chamber coupled to, and in fluid communication with, a fluid supply via said fluid inlet, said nozzle having an opening and a needle seat disposed about the inner surface of said nozzle opening, said operating mechanism having at least two electrically powered actuators, a needle and an actuator control system, said needle having a proximal end and a distal end, said needle proximal end coupled to said solenoid, said needle distal end shaped to sealingly engage said needle seat, said needle distal end disposed in said fluid chamber, said at least two actuators including a solenoid and a stepping solenoid assembly, said solenoid structured to move said needle between a first position, wherein said needle distal end sealingly engages said needle seat, and a second position wherein said needle distal end is spaced from said needle seat, said solenoid having a movable actuator member, said stepping solenoid assembly coupled to said solenoid with a solenoid spring disposed therebetween, said stepping solenoid assembly having a line conductor structured to be in electrical communication with a power source, said stepping solenoid assembly structured to receive input commands from said actuator control system and to incrementally move solenoid within said housing in response to said commands, said actuator control system structured to control said solenoid assembly and said solenoid so as to move said needle between said first position and said second position and said stepping solenoid assembly to provide fine adjustment to said needle position, said at least two actuators having an initial configuration and a calibration configuration, said system for calibrating needle lift comprising: an actuator sensor structured to detect changes in the current in said stepping solenoid assembly line conductor and to provide an output signal; a calibration module being executed in said actuator control system, said calibration module structured to receive said actuator sensor output signal; a needle position module being executed in said actuator control system, said needle position module structured to track the virtual position of said needle; and said calibration module further structured to detect an identifiable anomaly in said sensor output signal, said identifiable anomaly indicative of said actuator member seating against said solenoid and, in response to detecting said identifiable anomaly, recording needle virtual position data indicating that the current position of said needle corresponds to the spray gun calibration configuration. 2. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said identifiable anomaly is a change in a current characteristic. 3. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said identifiable anomaly is a change in the inductive reactance of a stepping solenoid assembly coil as measured by changes in the current in said stepping solenoid assembly line conductor. 4. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said calibration module is operable when said fluid chamber is filled with fluid. 5. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said housing defines an operating mechanism chamber, said operating mechanism chamber being sealed from said fluid chamber and wherein said actuator sensor is disposed within said operating mechanism chamber. 6. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said identifiable anomaly is a solenoid seating anomaly. 7. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein said actuator sensor is incorporated into an amplifier. 8. The system for calibrating needle lift in a spray gun assembly of claim 1 wherein, upon detection of an identifiable anomaly: said calibration module is structured to return said at least two actuators to said initial configuration; and said needle position module is zeroed. 9. A spray gun assembly having a system for calibrating needle lift comprising: a housing defining at least a fluid chamber; said fluid chamber having a fluid inlet, an excess fluid outlet and a nozzle, said fluid chamber structured to be coupled to, and in fluid communication with, a fluid supply via said fluid inlet; said nozzle having an opening and a needle seat disposed about the inner surface of said nozzle opening; an operating mechanism having at least two electrically powered actuators, a needle and an actuator control system; said at least two actuators including a solenoid and a stepping solenoid assembly; said solenoid having a movable actuator member coupled to said needle and being structured to move said needle between a first position, wherein said needle distal end sealingly engages said needle seat, and a selected position wherein said needle distal end is spaced from said needle seat; said actuator control system structured to control said at least two actuators so as to move said needle between said first position and a selected position; said stepping solenoid assembly having a line conductor structured to be in electrical communication with a power source, said stepping solenoid assembly structured to receive input commands from said actuator control system and to incrementally move said needle in response to said commands; said needle having a proximal end and a distal end, said needle proximal end coupled to said solenoid, said needle distal end shaped to sealingly engage said needle seat, said needle distal end disposed in said fluid chamber; said stepping solenoid assembly coupled to said solenoid via a solenoid spring, and structured to move said solenoid within said spray gun housing; said solenoid and stepping solenoid assembly having an initial configuration and a calibration configuration; a system for calibrating needle lift including an actuator sensor, a calibration module, and a needle position module; said actuator sensor structured to detect changes in the current in said stepping solenoid assembly line conductor and to provide an output signal; said calibration module being executed in said actuator control system, said calibration module structured to receive said actuator sensor output signal; said needle position module being executed in said actuator control system, said needle position module structured to track the virtual position of said needle; and said calibration module further structured to detect an identifiable anomaly in said sensor output signal, said anomaly indicative of said actuator member seating against said solenoid and, in response to detecting said identifiable anomaly, recording needle virtual position data indicating that the current position of said needle corresponds to the spray calibration configuration. 10. The spray gun assembly of claim 9 wherein: said identifiable anomaly is a change in a current characteristic. 11. The spray gun assembly of claim 9 wherein said identifiable anomaly is a change in the inductive reactance of the coil as measured by changes in the current. 12. The spray gun assembly of claim 9 wherein said calibration module is operable when said fluid chamber is filled with fluid. 13. The spray gun assembly of claim 9 wherein said housing defines an operating mechanism chamber, said operating mechanism chamber being sealed from said f

Assignees

Inventors

Classifications

  • for metering by volume · CPC title

  • Spray pistols, {discharge devices}(B05B9/03 takes precedence) · CPC title

  • including measuring or testing of device or component part · CPC title

  • Apparatus for measuring by volume and delivering fluids or fluent solid materials, not provided for in the preceding groups · CPC title

  • B05B1/3013Primary

    Lift valves (B05B1/3033 takes precedence) · CPC title

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What does patent US9238242B2 cover?
A device for calibrating a spray gun and an associated method are provided. The spray gun has a nozzle that is opened and closed by moving an internal needle out of and into sealing engagement with the nozzle. A virtual position of the needle is tracked and recorded by the control system. The control system is recalibrated when the virtual position and the actual position of the needle do not c…
Who is the assignee on this patent?
Stolle Machinery Co Llc
What technology area does this patent fall under?
Primary CPC classification B05B1/3013. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Jan 19 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).