IP Library Granted Patent US 10,589,998
Granted Patent B2
US 10,589,998 · App. 15/030,948 · Granted Mar 17, 2020

Graphite article

Inventors: David G. Rich (Middleburg Hts., OH); Martin David Smalc (Parma, OH)
Assignee: NeoGraf Solutions, LLC
C01B32/20B32B3/04B32B3/266B32B7/12B32B9/007B32B18/00C04B35/522C04B35/524C04B35/62218C04B35/645C04B41/0072C09K5/14H01L23/373B32B2307/302B32B2307/72B32B2457/00C04B2235/40C04B2235/401C04B2235/404C04B2235/405C04B2235/407C04B2235/408C04B2235/6562C04B2235/6587C04B2235/661C04B2235/666C04B2235/77C04B2235/945C04B2237/363C04B2237/62C04B2237/704H01L2924/0002
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Quick Facts
Patent No.
US 10,589,998
App. No.
15/030,948
Granted
Mar 17, 2020
Kind
B2
Abstract

A graphite article which can be compressed by more three (3%) percent at a contact pressure of 100 KPa or less without damaging the graphite article reducing the thermal impedance exhibited by the article. Also a graphite article comprising graphitized polymer having a thickness of at least 75 microns. Preferably the graphite has a density of less than 1.50 g/cc and a compressibility of more than 3% at a contact pressure of 100 KPa. Also the article has a generally sheet like shape. These articles may be used in a thermal management system to dissipate heat from a heat source.

Claims (20)

1. A graphite article comprising a single sheet of a graphitized polymer having a thickness of more than 150 microns, the graphite article having a density of less than 1.00 g/cc, a compressibility of more than 10% and up to 75% at a contact pressure of 100 kPa, and a thermal impedance of no more than 0.25 cm 2 ° C./W at a contact pressure of at least 700 kPa.

2. The graphite article of claim 1 wherein the thickness comprises up to 500 microns.

3. The graphite article of claim 2 further comprising a dopant in a concentration of at least 5 percent by weight.

4. The graphite article of claim 3 further comprising surface perforations.

5. The graphite article of claim 3 wherein the dopant comprises a conductive polymer.

6. The graphite article of claim 3 wherein the dopant comprises an EMI modifier.

7. The graphite article of claim 6 wherein the dopant comprises nickel, copper, mu-metals or combinations thereof.

8. The graphite article of claim 2 wherein the thickness comprises at least 200 microns.

9. The graphite article of claim 1 having a resistivity of less than 0.010 (° C./W) at a contact pressure of at least 200 KPa.

10. The graphite article of claim 1 further comprising a graphitized polymer having no dopant.

11. The graphite article of claim 1 having a resistivity of less than 0.019 (° C./W) at a contact pressure of at least 200 KPa.

12. The graphite article of claim 1 , wherein as the contact pressure of the graphite article increases, the in-plane thermal conductivity increases.

13. The graphite article of claim 12 , wherein as the contact pressure of the graphite article increases from 100 KPa to 700 KPa, the in-plane thermal conductivity increases by at least 1.25 times.

14. The graphite article of claim 13 , wherein as the contact pressure of the graphite article increases from 100 KPa to 700 KPa, the in-plane thermal conductivity increases up to 2 times.

15. The graphite article of claim 1 , wherein the graphite article has a compressibility of more than 20% and less than 65% at a contact pressure of 100 KPa.

16. A compressible graphite article comprising a graphitized polymer sheet having a thickness of at least 200 microns, a density of less than 1.00 g/cc, and a thermal impedance of no more than 0.25 cm 2 ° C./W at a contact pressure of at least 700 kPa.

17. The graphite article of claim 16 wherein the thickness comprises up to 300 microns.

18. The graphite article of claim 16 having a resistivity of less than 0.019 (° C./W) at a contact pressure of at least 200 KPa.

19. The graphite article of claim 16 , wherein as the contact pressure of the graphite article increases, the in-plane thermal conductivity increases.

20. The graphite article of claim 16 , wherein as the contact pressure of the graphite article increases from 100 KPa to 700 KPa, the in-plane thermal conductivity increases by at least 1.25 times.

Assignments (10)
RELEASE OF SECURITY INTEREST Recorded Feb 1, 2023
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: NEOGRAF SOLUTIONS, LLC
Reel/Frame 062972/0634 →
SECURITY INTEREST Recorded Jan 31, 2023
From: NEOGRAF SOLUTIONS, LLC
To: GCG INVESTORS V, L.P., AS AGENT
Reel/Frame 062568/0036 →
SECURITY INTEREST Recorded Jan 31, 2023
From: NEOGRAF SOLUTIONS, LLC
To: GLADSTONE CAPITAL CORPORATION
Reel/Frame 062571/0858 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2020
From: SMALC, MARTIN
To: GRAFTECH INTERNATIONAL HOLDINGS INC.
Reel/Frame 051460/0086 →
SECURITY AGREEMENT Recorded Sep 13, 2017
From: NEOGRAF SOLUTIONS, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 043843/0582 →
CHANGE OF NAME Recorded Jul 26, 2017
From: ADVANCED ENERGY TECHNOLOGIES LLC
To: NEOGRAF SOLUTIONS, LLC
Reel/Frame 043336/0472 →
RELEASE OF SECURITY INTERESTS RECORDED AT REEL/FRAMES 013463/0360, 024678/0830, 014357/0075, AND 035839/0754 Recorded Jul 6, 2017
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT FKA MORGAN GUARANTY TRUST COMPANY OF NEW YORK
To: ADVANCED ENERGY TECHNOLOGIES LLC AS ASSIGNEE OF GRAFTECH INTERNATIONAL HOLDINGS INC. FKA ADVANCED ENERGY TECHNOLOGY INC. FKA GRAFTECH INC.
Reel/Frame 043099/0502 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT APPL. NO. 14/771,229 PREVIOUSLY RECORDED AT REEL: 040647 FRAME: 0534. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 21, 2017
From: GRAFTECH INTERNATIONAL HOLDINGS INC.
To: ADVANCED ENERGY TECHNOLOGIES LLC
Reel/Frame 042938/0856 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2016
From: GRAFTECH INTERNATIONAL HOLDINGS INC.
To: ADVANCED ENERGY TECHNOLOGIES LLC
Reel/Frame 040647/0534 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2016
From: RICH, DAVID G.
To: GRAFTECH INTERNATIONAL HOLDINGS INC.
Reel/Frame 038549/0521 →
Continuity (2)
Provisional Application 61899998 · Nov 5, 2013
Related Publication 20160280550A1 · Sep 29, 2016
Cited By (1)
US 12,309,977