IP Library Patent Application 17225977
Patent Application
App. No. 17/225,977

High Throughput Additive Manufacturing System Supporting Absorption Of Amplified Spontaneous Emission In Laser Amplifiers

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Quick Facts
Patent No.
US None
App. No.
17/225,977
Abstract

In one embodiment a manufacturing method involves generating laser light at a first wavelength or range of wavelengths. A laser amplifier having a gain medium that amplifies light at a second wavelength or range of wavelengths can be optically pumped in response to receiving the generated laser light. The gain medium is cooled with a coolant fluid able to absorb the second wavelength or range of wavelengths and the generated and amplified laser light is directed toward an article processing unit.

Claims (32)

1 . A manufacturing method, comprising:

generating laser light at a first wavelength or range of wavelengths;

optically pumping a laser amplifier having a gain medium that amplifies light at a second wavelength or range of wavelengths in response to receiving the generated laser light;

cooling the gain medium with a coolant fluid able to absorb the second wavelength or range of wavelengths;

directing the generated and amplified laser light toward an article processing unit.

2 . The manufacturing method of claim 1 , wherein the gain medium is at least one of a rod amplifier and a slab amplifier.

3 . The manufacturing method of claim 1 , wherein the gain medium is at least one of a Nd:YAG rod and a Nd:YLF rod.

4 . The manufacturing method of claim 1 , wherein the coolant fluid comprises an aqueous salt solution.

5 . The manufacturing method of claim 1 , wherein the coolant fluid comprises an aqueous salt solution with at least one of samarium chloride, samarium nitrate, samarium sulfate, copper nitrate, copper sulfate, or copper chloride.

6 . The manufacturing method of claim 1 , wherein heat from the coolant fluid is processed by a rejected energy handling unit.

7 . The manufacturing method of claim 1 , wherein directed amplified laser light is patterned as a two dimensional image.

8 . The manufacturing method of claim 1 , wherein directed amplified laser light is patterned using a light valve.

9 . The manufacturing method of claim 1 , wherein the article processing unit comprises an additive manufacturing build chamber.

10 . The manufacturing method of claim 1 , wherein the article processing unit comprises an additive manufacturing build chamber that holds at least one of a metal, ceramic, plastic, glass metallic hybrid, ceramic hybrid, plastic hybrid, or glass hybrid material that can receive directed amplified laser light.

11 . A manufacturing method using a laser amplifier, comprising:

providing a light pump source for the laser amplifier that can generate light at a first wavelength or range of wavelengths;

optically pumping the laser amplifier using a gain medium that amplifies light at a second wavelength or range of wavelengths in response to receiving generated light from the light pump source;

providing a housing to at least partially surround the gain medium and hold a solid matrix that is able to absorb the second wavelength or range of wavelengths;

cooling the laser amplifier with a coolant fluid; and

directing the generated and amplified laser light toward an article processing unit.

12 . The manufacturing method using a laser amplifier of claim 11 , wherein the solid matrix defines a lattice structure doped with samarium or copper.

13 . The laser amplifier of claim 11 , wherein the solid matrix comprises at least one of a lattice structure doped with samarium or copper or a bed of pebble shaped material doped with samarium or copper.

14 . A manufacturing system, comprising:

a laser source generating light at a first wavelength or range of wavelengths;

a laser amplifier having a gain medium that amplifies light at a second wavelength or range of wavelengths in response to receiving the generated laser light, with the laser amplifier including a gain medium cooled with a coolant fluid able to absorb the second wavelength or range of wavelengths;

a laser patterning unit positioned to receive and pattern the amplified light; and

an image relay positioned to receive the patterned and amplified light, directing it toward an article processing unit.

15 . The manufacturing system of claim 14 , wherein heat from the coolant fluid is processed by a rejected energy handling unit.

16 . The manufacturing system of claim 14 , wherein amplified laser light is spatially patterned as a two dimensional image.

17 . The manufacturing system of claim 14 , wherein amplified laser light is patterned using a light valve.

18 . The manufacturing system of claim 14 , wherein the article processing unit comprises an additive manufacturing build chamber.

19 . The manufacturing system of claim 14 , wherein the article processing unit comprises an additive manufacturing build chamber that holds at least one of a metal, ceramic, plastic, glass metallic hybrid, ceramic hybrid, plastic hybrid, or glass hybrid material that can receive amplified and patterned laser light.

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 8, 2021
From: BAYRAMIAN, ANDREW J.; DEMUTH, JAMES A.
To: SEURAT TECHNOLOGIES, INC.
Reel/Frame 055870/0946 →