IP Library Granted Patent US 9,010,762
Granted Patent B2
US 9,010,762 · App. 13/993,434 · Granted Apr 21, 2015

Low-friction seal ring with inexpensive diamond coating

Inventors: Joachim Otschik (Aschaffenburg, DE); Andreas Schrüfer (Wolfratshausen, DE); Dieter Ziegenbein (Geretsried, DE); Rudolf Kollinger (Königsdorf, DE); Lothar Schäfer (Meine, DE); Markus Höfer (Gardessen, DE); Markus Armgardt (Braunschweig, DE)
Assignee: EagleBurgmann Germany GmbH & Co. KG
F16J15/16C23C16/27F16J15/3496
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Quick Facts
Patent No.
US 9,010,762
App. No.
13/993,434
Granted
Apr 21, 2015
Kind
B2
Abstract

The present invention refers to a seal ring for a mechanical seal, comprising: a base body ( 2 ) with a diamond layer ( 3 ) which is applied to the base body ( 2 ) and configured as a sliding surface, wherein the diamond layer ( 3 ) has a thickness (D) which is less than or equal to 4 μm, particularly less than or equal to 3 μm, particularly less than or equal to 2 μm, particularly preferably about 1 μm, and wherein the base body ( 2 ) is without fissures or only comprises fissures that have a maximum longitudinal extension (L) on a surface of the base body ( 2 ) or in the base body ( 2 ) that is less than or equal to 5 μm.

Claims (31)

1. A seal ring for a mechanical seal, comprising:

a base body with a diamond layer which is applied to a bond surface of the base body, wherein the diamond layer is configured as a sliding surface,

wherein the diamond layer has a thickness (D) which is less than or equal to 4 μm,

wherein the bond surface of the base body includes no fissure that has a maximum longitudinal extension (L) in the base body that is greater than 5 μm, and

wherein the bond surface of the base body includes no fissure that has a fissure depth (T) greater than 3 μm.

2. The seal ring according to claim 1 , wherein the diamond layer has a thickness of at least 0.5 μm.

3. The seal ring according to claim 1 , wherein the bond surface of the base body includes no pores.

4. The seal ring according to claim 1 , wherein a crystallite size of the diamonds of the diamond layer is between 0.2-5 μm.

5. The seal ring according to claim 1 , wherein the diamond layer has a roughness (R a ) of less than or equal to 0.2 μm.

6. The seal ring according to claim 1 , wherein the diamond layer has an SP3 fraction of more than or equal to 97%.

7. The seal ring according to claim 1 , wherein the base body has a Vickers hardness of more than or equal to 1400 HV.

8. The seal ring according to claim 1 , wherein a defect density of the diamond layer is less than or equal to 200×10 −9 , wherein the defect density is the ratio of the defect areas to the area of the surface that is coated without any defects.

9. The seal ring according to claim 1 , wherein the base body includes at least one of silicon carbide (SiC) or tungsten carbide (WC).

10. The seal ring according to claim 1 , wherein the surface of the diamond layer corresponds to a surface of the base body with a deviation of not more than +0.2 μm.

11. The seal ring according to claim 1 , wherein the diamond layer has a thickness (D) which is less than or equal to 3 μm.

12. The seal ring according to claim 1 , wherein the diamond layer has a thickness (D) which is less than or equal to 2 μm.

13. The seal ring according to claim 1 , wherein the diamond layer has a thickness (D) which is about 1 μm.

14. The seal ring according to claim 1 , wherein the bond surface of the base body includes only pores wherein the mean pore diameter of the pores is less than or equal to 0.4 mm.

15. The seal ring according to claim 1 , wherein the bond surface of the base body includes only pores wherein the mean pore diameter of the pores is less than or equal to 0.3 mm.

16. The seal ring according to claim 1 , wherein the bond surface of the base body includes only pores wherein the mean pore diamter of the pores is less than or equal to 0.2 mm.

17. The seal ring according to claim 1 , wherein the bond surface of the base body includes only pores wherein the pores have a distance from one another of at least 100 times the mean pore diameter of the pores.

18. The seal ring according to claim 1 , wherein a crystallite size of the diamonds of the diamond layer is between 0.2 to 4 μm.

19. The seal ring according to claim 1 , wherein a crystallite size of the diamonds of the diamond layer is between 0.2 to 3 μm.

20. The seal ring according to claim 1 , wherein a crystallite size of the diamonds of the diamond layer is between 0.2 to 2.5 μm.

21. The seal ring according to claim 1 , wherein a crystallite size of the diamonds of the diamond layer is between 0.2 to 1 μm.

22. The seal ring according to claim 1 , wherein the diamond layer has a roughness (R a ) of less than or equal to 0.15 μm.

23. The seal ring according to claim 1 , wherein the diamond layer has a roughness (R a ) of less than or equal to 0.1 μm.

24. A seal ring for a mechanical seal, comprising:

a base body with a diamond layer which is applied to a bond surface of the base body, wherein the diamond layer is configured as a sliding surface,

wherein the diamond layer has a thickness (D) which is less than or equal to 4 μm, and

wherein the bond surface of the base body includes no fissure that has a maximum longitudinal extension (L) in the base body that is greater than 5 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2013
From: OTSCHIK, JOACHIM; SCHRUFER, ANDREAS; ZIEGENBEIN, DIETER; KOLLINGER, RUDOLF; SCHAFER, LOTHAR; HOFER, MARKUS; ARMGARDT, MARKUS
To: EAGLEBURGMANN GERMANY GMBH & CO. KG
Reel/Frame 030881/0555 →
Priority Claims (1)
DE 10 2010 054 875 · Dec 17, 2010 · national
Continuity (1)
Related Publication 20130313785A1 · Nov 28, 2013