IP Library Granted Patent US 12,515,256
Granted Patent B2
US 12,515,256 · App. 18/624,762 · Granted Jan 6, 2026

Light valve cooling system

Inventors: Drew W. Kissinger (Carlisle, MA); Susanne Kras (Chelmsford, MA); James A. DeMuth (Woburn, MA); Andrew J. Bayramian (Marblehead, MA); Francis L. Leard (Sudbury, MA); Cote LeBlanc (Malden, MA)
Assignee: Seurat Technologies, Inc.
B22F12/20B22F12/40B29C64/268B33Y10/00B33Y30/00B33Y70/00G02B7/028B29K2105/251
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Quick Facts
Patent No.
US 12,515,256
App. No.
18/624,762
Filed
Apr 2, 2024
Granted
Jan 6, 2026
Kind
B2
Art Unit
1745
USPC
427/596
Abstract

An additive manufacturing system includes a high power laser to form a laser beam directed against a light valve. An active light valve cooling system is arranged to remove heat from the light valve and a heat exchanger is connected to the active light valve cooling system. A heat exchange fluid is circulated through the active light valve cooling system and the heat exchanger.

Claims (14)

1 . An additive manufacturing method, comprising:

directing a laser beam from a laser against a light valve for patterning the laser beam for printing an object in an additive manufacturing system;

enclosing the light valve in a cooling housing comprising gaskets to seal interfaces with the light valve and with two or more fluid connectors to prevent fluid leakage from the cooling housing;

pumping heat exchange fluid from a heat exchanger into the cooling housing through the fluid connectors, wherein the heat exchange fluid is sprayed over the light valve within the cooling housing using a nozzle configured to generate turbulence and phase change in the fluid for removing heat from the light valve; and

circulating the sprayed heat exchange fluid from the cooling housing back to the heat exchanger to provide useful energy to at least one component of the additive manufacturing system.

2 . The additive manufacturing method of claim 1 , wherein the heat exchanger is connected to provide energy to at least one component of the additive manufacturing system.

3 . The additive manufacturing method of claim 1 , wherein the heat exchanger is configured to power a heat engine able to generate mechanical, thermoelectric, or electric power.

4 . The additive manufacturing method of claim 1 , wherein the heat exchanger is configured to be connected to selected components of the additive manufacturing system to increase temperature of the selected components.

5 . The additive manufacturing method of claim 1 , wherein the heat exchange fluid comprises a phase change material, wherein phase change of the heat exchange fluid removes at least part of the heat.

6 . The additive manufacturing method of claim 1 , wherein the heat exchange fluid is sprayed onto a hot substrate of the light valve.

7 . The additive manufacturing method of claim 1 , wherein an active light valve cooling system cools an array of light valves.

8 . The additive manufacturing method of claim 1 , wherein multiple laser beams from multiple lasers are directed to the light valve.

9 . The additive manufacturing method of claim 1 , wherein the light valve provides two-dimensionally patterned light from the laser for the printing.

10 . The additive manufacturing method of claim 1 , wherein a plurality of article processing units and build chambers are positioned to receive light from the light valve.

Assignments (2)
SECURITY INTEREST Recorded Dec 9, 2025
From: SEURAT TECHNOLOGIES, INC.
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 073909/0977 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2024
From: KRAS, SUSANNE; DEMUTH, JAMES A.; BAYRAMIAN, ANDREW J.; LEARD, FRANCIS L.; KISSINGER, DREW W.; LEBLANC, COTE
To: SEURAT TECHNOLOGIES, INC.
Reel/Frame 066989/0872 →
Continuity (3)
Continuation 17512966 · Oct 28, 2021
Provisional Application 63107308 · Oct 29, 2020
Related Publication 20240246152A1 · Jul 25, 2024
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