IP Library Granted Patent US 9,757,961
Granted Patent B2
US 9,757,961 · App. 15/358,111 · Granted Sep 12, 2017

ADA/Braille-compliant signage printer and a method of printing UV LED curable ink using a flat bed ink jet printer

Inventors: Blair Allen (Cromwell, CT); Bill Allen (Kensington, CT); Steve Chamberland (Berlin, CT); Lawrence Erikson (Glastonbury, CT); Matthew Sands (Rocky Hill, CT)
Assignee: Direct Color LLC
B41J11/002B41J2/01
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Quick Facts
Patent No.
US 9,757,961
App. No.
15/358,111
Granted
Sep 12, 2017
Kind
B2
Abstract

A printer includes a substrate and at least one print head. The at least one print head is movable in a print direction. The print head includes an ink jet dispenser configured to jet UV-curable ink toward the substrate in a target region. The at least one print head further includes a UV curing system behind the ink jet dispenser in a following direction opposite the print direction. The UV curing system is configured to emit UV irradiance in a radiation field that covers the target region and provides sufficient intensity to at least pin the UV-curable ink in the target region.

Claims (36)

1. A printer comprising:

a table configured to hold a substrate;

at least one print head movable in a print direction, the at least one print head comprising:

an ink jet dispenser configured to jet UV-curable ink toward the substrate in a target region; and

a UV curing system behind the ink jet dispenser in a following direction opposite the print direction, the UV curing system configured to emit UV irradiance in a radiation field that covers the target region and provides sufficient intensity to at least pin the UV-curable ink in the target region.

2. The printer of claim 1 , further comprising:

an encoder sensor coupled to the substrate.

3. The printer of claim 2 , wherein the encoder sensor is configured to generate a datum corresponding to the position of the substrate.

4. The printer of claim 1 , wherein the ink jet dispenser is a piezo-electric dispenser.

5. The printer of claim 1 , wherein the UV curing system comprises a UV source configured to emit UV irradiance with a dispersion angle that results in the radiation field having sufficient width to cover the target region.

6. The printer of claim 1 , wherein the UV curing system further comprises:

a plurality of mirrors configured to deflect the UV irradiance from a UV source in a direction perpendicular to the print direction to direct the UV irradiance into the radiation field that covers the target region.

7. The printer of claim 6 , wherein the plurality of mirrors includes:

a following mirror that extends towards the substrate;

a side mirror that extends towards the substrate; and

an angled mirror that extends both towards the substrate and also extends in a direction perpendicular to the print direction.

8. The printer of claim 7 , wherein the angled mirror is angled by 45° relative to the side mirror.

9. The printer of claim 7 , wherein the angled mirror is configured to deflect less UV irradiance than the side mirror.

10. The printer of claim 1 , wherein the ink jet dispenser is configured with a plurality of nozzles operable to dispense the UV curable ink onto a plurality of targets, and the UV curing system is configured to emit UV irradiance in the radiation field covering all of the plurality of targets UV ink present at the targets.

11. The printer of claim 1 , and further comprising a stepper motor configured to move the substrate along a rail.

12. The printer of claim 11 , wherein the stepper motor is coupled to a lead screw, and the lead screw is coupled to the substrate.

13. The printer of claim 1 , wherein each at least one print head comprises a plurality of print head units each having ink jet dispensing nozzles configured to jet UV-curable ink toward the substrate.

14. The printer of claim 1 , wherein the at least one print head comprises a plurality of print heads ganged together.

15. A method of printing on a substrate, the method comprising:

formulating a print design procedure;

calibrating a position of a substrate relative to at least one print head, the at least one print head including an ink jet dispenser configured to jet UV-curable ink onto the substrate in a target region, and including a UV curing system arranged behind the ink jet dispenser in a following direction and configured to emit UV irradiance in a radiation field that covers the target region and provide sufficient intensity to at least pin the UV-curable ink in the target region;

dispensing at least a first pass of UV-curable ink from the ink jet dispenser onto the substrate in a pattern defined by the print design procedure while moving the at least one print head relative to the substrate in a print direction opposite the following direction; and

emitting UV irradiance from the UV curing system to at least pin the UV-curable ink dispensed from the ink jet dispenser.

16. The method of claim 15 , wherein emitting UV irradiance from the UV curing system comprises deflecting the UV irradiance with a plurality of mirrors, the plurality of mirrors comprising:

a following mirror that extends towards the substrate;

a side mirror that extends towards the substrate; and

an angled mirror that extends both towards the substrate and also extends in a direction perpendicular to the print direction.

17. The method of claim 15 , wherein emitting UV irradiance from the UV curing system comprises operating a UV source configured to emit the UV irradiance with a dispersion angle that results in the radiation field having sufficient width to cover the target region of UV-curable ink dispensed by the ink jet dispenser.

18. The method of claim 15 , wherein calibrating the position of the substrate relative to the at least one print head comprises generating a datum corresponding to the position of the substrate with an encoder sensor.

19. The method of claim 15 , wherein multiple passes of the UV-curable ink are dispensed from the ink jet dispenser, with each pass of the multiple passes being followed by emitting UV irradiance from the UV curing system to at least pin the UV-curable ink dispensed from the ink jet dispenser.

20. The method of claim 15 , wherein moving the at least one print head relative to the substrate in the print direction comprises moving the at least one print head while the substrate remains stationary, or moving the substrate while the at least one print head remains stationary.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED AT REEL: 041388 FRAME: 0508. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 13, 2019
From: ALLEN, BLAIR; ALLEN, BILL; CHAMBERLAND, STEVE; ERIKSON, LAWRENCE; SANDS, MATTHEW
To: DIRECT COLOR, LLC
Reel/Frame 049458/0075 →
CHANGE OF NAME Recorded Mar 27, 2019
From: DIRECT COLOR, LLC
To: DIRECT COLOR, INC.
Reel/Frame 048715/0648 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2017
From: ALLEN, BLAIR; ALLEN, BILL; CHAMBERLAND, STEVE; ERIKSON, LAWRENCE; SANDS, MATTHEW
To: DIRECT COLOR LLC
Reel/Frame 041388/0508 →
Continuity (3)
Continuation In Part 14780346
Provisional Application 61805263 · Mar 26, 2013
Related Publication 20170120626A1 · May 4, 2017