IP Library Granted Patent US 10,845,239
Granted Patent B1
US 10,845,239 · App. 16/561,704 · Granted Nov 24, 2020

Laser-induced spectroscopy system and process

Inventors: Randy James Monahan (Strongsville, OH); John Joseph Nowakowski (Richfield, OH); Lauren Elizabeth Callahan (Medina, OH); Geoffrey K. Urbanek (Streetsboro, OH)
Assignee: SCHENCK PROCESS LLC
G01J3/0202G01J3/0208G01J3/443G01N21/718
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Quick Facts
Patent No.
US 10,845,239
App. No.
16/561,704
Granted
Nov 24, 2020
Kind
B1
Abstract

Specialized linkage assemblies for Laser-Induced Breakdown Spectroscopy (“LIBS”) systems are provided. The linkage assemblies may facilitate the attachment of the laser housing of the LIBS system onto an existing sample supply chamber, such as a volumetric or gravimetric feeder. Generally, the linkage assemblies may comprise a specialized purge head and inert gas assembly that facilitate the attachment of the laser housing and may enhance the functionality of the LIBS system.

Claims (36)

1. A linkage assembly for a laser-induced breakdown spectroscopy system, said linkage assembly comprising an inert gas flange assembly, wherein said inert gas flange assembly comprises:

(a) an inert gas flange comprising an inert gas intake for transferring an inert gas into said inert gas flange, wherein said inert gas intake comprises a tube, a pipe, or a borehole; and

(b) a removable lens housing comprising a first lens and a second lens,

wherein said removable lens housing is positioned within said inert gas flange and is in fluid communication with said inert gas intake,

wherein said first lens comprises an aperture allowing the flow of said inert gas from said lens housing to outside of said linkage assembly.

2. The linkage assembly according to claim 1 , wherein said second lens comprises a solid lens.

3. The linkage assembly according to claim 1 , wherein said aperture is positioned in the center of said first lens.

4. The linkage assembly according to claim 3 , wherein said first lens comprises a plurality of additional apertures surrounding said aperture.

5. The linkage assembly according to claim 1 , wherein said inert gas assembly comprises one or more O-rings for positioning said lens housing.

6. The linkage assembly according to claim 1 , wherein said inert gas comprises argon gas.

7. The linkage assembly according to claim 1 , wherein said linkage assembly further comprises a purge head and a leak-resistant valve, wherein said inert gas intake is in fluid communication with said purge head and said leak-resistant valve.

8. A laser-induced breakdown spectroscopy system, said laser-induced breakdown spectroscopy system comprising:

(a) a laser housing comprising a laser source and a spectrometer; and

(b) a linkage assembly for connecting said laser housing to a sample supply chamber, wherein said linkage assembly comprises an inert gas flange assembly, wherein said inert gas flange assembly comprises—

(i) an inert gas flange comprising an inert gas intake for transferring an inert gas into said inert gas flange, wherein said inert gas intake comprises a tube, a pipe, or a borehole; and

(ii) a removable lens housing comprising a first lens and a second lens,

wherein said removable lens housing is positioned within said inert gas flange and is in fluid communication with said inert gas intake,

wherein said first lens comprises an aperture allowing the flow of said inert gas from said lens housing to said sample supply chamber.

9. The laser-induced breakdown spectroscopy system according to claim 8 , wherein said second lens comprises a solid lens.

10. The laser-induced breakdown spectroscopy system according to claim 8 , wherein said aperture is positioned in the center of said first lens.

11. The laser-induced breakdown spectroscopy system according to claim 10 , wherein said first lens comprises a plurality of additional apertures surrounding said aperture.

12. The laser-induced breakdown spectroscopy system according to claim 8 , wherein said inert gas assembly comprises one or more O-rings for positioning said lens housing.

13. The laser-induced breakdown spectroscopy system according to claim 8 , wherein said inert gas comprises argon gas.

14. The laser-induced breakdown spectroscopy system according to claim 8 , wherein said linkage assembly further comprises a purge head and a leak-resistant valve, wherein said inert gas intake is in fluid communication with said purge head and said leak-resistant valve.

15. A method for operating a laser-induced breakdown spectroscopy system, said method comprising:

(a) providing a laser housing comprising a laser source and a spectrometer connected to a sample supply chamber via a linkage assembly, wherein said linkage assembly comprises an inert gas flange assembly, wherein said inert gas flange assembly comprises—

(i) an inert gas flange comprising an inert gas intake for transferring an inert gas into said inert gas flange, wherein said inert gas intake comprises a tube, a pipe, or a borehole; and

(ii) a removable lens housing comprising a first lens and a second lens,

wherein said removable lens housing is positioned within said inert gas flange and is in fluid communication with said inert gas intake,

wherein said first lens comprises an aperture allowing the flow of said inert gas from said lens housing to said sample supply chamber;

(b) contacting said sample with said laser inside said sample supply chamber.

16. The method according to claim 15 , wherein said second lens comprises a solid lens.

17. The method according to claim 15 , wherein said aperture is positioned in the center of said first lens, wherein said first lens comprises a plurality of additional apertures surrounding said aperture.

18. The method according to claim 15 , wherein said inert gas assembly comprises one or more O-rings for positioning said lens housing.

19. The method according to claim 15 , wherein said inert gas comprises argon gas.

20. The method according to claim 15 , wherein said linkage assembly further comprises a purge head and a leak-resistant valve, wherein said inert gas intake is in fluid communication with said purge head and said leak-resistant valve.

Assignments (4)
SECURITY INTEREST (TL/RCF) Recorded Feb 10, 2026
From: BAKER PERKINS, INC.; COPERION CORPORATION; COPERION PROCESS SOLUTIONS LLC (F/K/A SCHENCK PROCESS LLC); COPERION FOOD EQUIPMENT LLC; MOLD-MASTERS DME COMPANY LLC (F/K/A DME COMPANY LLC); K-TRON TECHNOLOGIES, INC.; ROTEX GLOBAL, LLC; SHICK SOLUTIONS, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 075115/0459 →
SECURITY INTEREST (LC) Recorded Feb 10, 2026
From: BAKER PERKINS, INC.; COPERION CORPORATION; COPERION PROCESS SOLUTIONS LLC (F/K/A SCHENCK PROCESS LLC); COPERION FOOD EQUIPMENT LLC; MOLD-MASTERS DME COMPANY LLC (F/K/A DME COMPANY LLC); K-TRON TECHNOLOGIES, INC.; ROTEX GLOBAL, LLC; SHICK SOLUTIONS, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 074733/0605 →
SECURITY INTEREST (SECURED NOTES) Recorded Feb 10, 2026
From: BAKER PERKINS, INC.; COPERION CORPORATION; COPERION PROCESS SOLUTIONS LLC (F/K/A SCHENCK PROCESS LLC); COPERION FOOD EQUIPMENT LLC; MOLD-MASTERS DME COMPANY LLC (F/K/A DME COMPANY LLC); K-TRON TECHNOLOGIES, INC.; ROTEX GLOBAL, LLC; SHICK SOLUTIONS, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 074733/0711 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2020
From: MONAHAN, RANDY JAMES; NOWAKOWSKI, JOHN JOSEPH; CALLAHAN, LAUREN ELIZABETH; URBANEK, GEOFFREY K.
To: SCHENCK PROCESS LLC
Reel/Frame 051801/0886 →
Cited By (1)
US 12,613,120