IP Library Granted Patent US 11,679,556
Granted Patent B2
US 11,679,556 · App. 17/114,607 · Granted Jun 20, 2023

Additive manufacturing systems and methods for the same

Inventors: Patrick Y. Maeda (San Jose, CA); Joanne L. Lee (Palo Alto, CA)
Assignee: PALO ALTO RESEARCH CENTER INCORPORATED
B29C64/268B22D23/003B29C64/112B29C64/286B29C64/393B33Y10/00B33Y30/00B33Y50/02B33Y70/00B29K2101/12
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Quick Facts
Patent No.
US 11,679,556
App. No.
17/114,607
Granted
Jun 20, 2023
Kind
B2
Abstract

Additive manufacturing devices and methods for the same are provided. The additive manufacturing device may include a stage configured to support a substrate, a printhead disposed above the stage, and a targeted heating system disposed proximal the printhead. The printhead may be configured to heat a build material to a molten build material and deposit the molten build material on the substrate in the form of droplets to fabricate the article. The targeted heating system may be configured to control a temperature or temperature gradient of the droplets deposited on the substrate, an area proximal the substrate, or combinations thereof.

Claims (41)

1. An additive manufacturing device for fabricating an article, comprising:

a stage configured to support a substrate;

a printhead disposed above the stage, the printhead configured to heat a build material to a molten build material and deposit the molten build material on the substrate as droplets to fabricate the article; and

a targeted heating system disposed proximal the printhead, the targeted heating system configured to control a temperature or temperature gradient of the droplets deposited on the substrate, an area proximal the substrate, or combinations thereof,

wherein the targeted heating system comprises a monogon system, the monogon system comprising one or more monogon scanners, one or more Galvo mirrors, or combinations thereof.

2. The additive manufacturing device of claim 1 , wherein the printhead and the targeted heating system are coupled with one another.

3. The additive manufacturing device of claim 1 , wherein the targeted heating system further comprises one or more lasers.

4. The additive manufacturing device of claim 3 , wherein the one or more lasers comprise an irradiance of from about 1,000 W/cm 2 to about 10,000 W/cm 2 .

5. The additive manufacturing device of claim 3 , wherein the one or more lasers comprise a laser imager.

6. The additive manufacturing device of claim 5 , wherein the laser imager comprises a 1D imager or a 2D imager.

7. The additive manufacturing device of claim 1 , wherein the targeted heating system is configured to operate at temperatures of from greater than or equal to about 300° C. to less than or equal to about 600° C.

8. The additive manufacturing device of claim 1 , wherein the targeted heating system further comprises a laser system.

9. The additive manufacturing device of claim 8 , wherein the laser system comprises:

a fiber laser;

a fiber coupled laser module;

an output fiber coupled with the fiber coupled laser module;

a collimator disposed downstream of the fiber output;

a polarization rotator disposed downstream of the collimator;

a variable retarder disposed downstream of the collimator; and

a wave retarder disposed downstream of the variable retarder.

10. The additive manufacturing device of claim 9 , further comprising:

a first polarizer disposed between the collimator and the polarization rotator;

a second polarizer disposed between the polarization rotator and the variable retarder; and

a third polarizer disposed downstream of the wave retarder.

11. The additive manufacturing device of claim 10 , wherein the polarization rotator is disposed upstream of the variable retarder and the wave retarder.

12. The additive manufacturing device of claim 9 , further comprising:

a first polarizer disposed between the collimator and the variable retarder;

a second polarizer disposed between the wave retarder and the polarization rotator; and

a third polarizer disposed downstream of the polarization rotator.

13. The additive manufacturing device of claim 12 , wherein the variable retarder and the wave retarder are disposed upstream of the polarization rotator.

14. The additive manufacturing device of claim 1 , wherein the monogon system comprises a monogon scanner, and wherein the monogon scanner is substantially free of a reflective coating.

15. The additive manufacturing device of claim 1 , further comprising a monitoring system configured to monitor a portion of the additive manufacturing device.

16. The additive manufacturing device of claim 15 , wherein the monitoring system comprises a pyrometer configured to measure a temperature of the substrate, the area proximal the substrate, or combinations thereof.

17. The additive manufacturing device of claim 1 , further comprising:

a computing system operably coupled with the printhead and the targeted heating system; and

a monitoring system operably coupled with the computing system and configured to monitor the additive manufacturing device.

18. The additive manufacturing device of claim 1 , wherein the build material comprises one or more metals or metal alloys.

19. The additive manufacturing device of claim 18 , wherein the one or more metals or metal alloys comprise one or more of aluminum, an aluminum alloy, brass, bronze, chromium, a cobalt-chrome alloy, copper, a copper alloy, an iron alloy, nickel, a nickel alloy, a nickel-titanium alloy, stainless steel, tin, titanium, a titanium alloy, gold, silver, molybdenum, tungsten, or combinations thereof.

20. The additive manufacturing device of claim 1 , wherein the build material comprises one or more polymers.

21. The additive manufacturing device of claim 20 , wherein the one or more polymers comprise one or more of acrylonitrile butadiene styrene (ABS), polycarbonate (PC), polylactic acid (PLA), high density polyethylene (HDPE), polyphenylsulfone (PPSU), poly(meth)acrylate, polyetherimide (PEI), polyether ether ketone (PEEK), high impact polystyrene (HIPS), thermoplastic polyurethane (TPU), a polyamide, composites thereof, or combinations thereof.

22. The additive manufacturing device of claim 1 , wherein the monogon system comprises the one or more monogon scanners and the one or more Galvo mirrors.

Assignments (9)
SECOND LIEN NOTES PATENT SECURITY AGREEMENT Recorded Jul 2, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 071785/0550 →
FIRST LIEN NOTES PATENT SECURITY AGREEMENT Recorded Apr 11, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070824/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT RF 064760/0389 Recorded Feb 13, 2024
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: XEROX CORPORATION
Reel/Frame 068261/0001 →
SECURITY INTEREST Recorded Feb 13, 2024
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 066741/0001 →
SECURITY INTEREST Recorded Nov 20, 2023
From: XEROX CORPORATION
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 065628/0019 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVAL OF US PATENTS 9356603, 10026651, 10626048 AND INCLUSION OF US PATENT 7167871 PREVIOUSLY RECORDED ON REEL 064038 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 28, 2023
From: PALO ALTO RESEARCH CENTER INCORPORATED
To: XEROX CORPORATION
Reel/Frame 064161/0001 →
SECURITY INTEREST Recorded Jun 22, 2023
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 064760/0389 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2023
From: PALO ALTO RESEARCH CENTER INCORPORATED
To: XEROX CORPORATION
Reel/Frame 064038/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2020
From: MAEDA, PATRICK Y.; LEE, JOANNE L.
To: PALO ALTO RESEARCH CENTER INCORPORATED
Reel/Frame 054572/0138 →
Continuity (1)
Related Publication 20220176630A1 · Jun 9, 2022
Cited By (1)
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