IP Library Granted Patent US 8,267,686
Granted Patent B2
US 8,267,686 · App. 11/536,724 · Granted Sep 18, 2012

Orthodontic bracket with brazed archwire slot liner

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Quick Facts
Patent No.
US 8,267,686
App. No.
11/536,724
Granted
Sep 18, 2012
Kind
B2
Abstract

An orthodontic article and method of making the orthodontic article, where the orthodontic article includes a fine-grain ceramic bracket and a metal liner secured in an archwire slot of the bracket with a brazing alloy comprising silver, copper, and at least about 1.5% by weight titanium.

Claims (29)

1. An orthodontic article comprising:

a bracket having an archwire slot, and compositionally comprising a ceramic material having an average grain size of about 5.0 micrometers or less; and

a metal liner secured in the archwire slot with a brazing alloy comprising silver, copper, and at least about 1.5% by weight titanium, based on an entire weight of the brazing alloy.

2. The orthodontic article of claim 1 , wherein the average grain size of the ceramic material is about 1.0 micrometer or less.

3. The orthodontic article of claim 1 , wherein the titanium constitutes about 1.5% by weight to about 2.5% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

4. The orthodontic article of claim 3 , wherein the titanium constitutes about 1.5% by weight to about 2.0% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

5. The orthodontic article of claim 1 , wherein the silver constitutes about 60.0% by weight to about 70.0% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

6. The orthodontic article of claim 1 , wherein the copper constitutes about 30.0% by weight to about 40.0% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

7. The orthodontic article of claim 1 , wherein the brazing alloy further comprises tin.

8. The orthodontic article of claim 7 , wherein the tin constitutes about 0.1% by weight to about 2.0% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

9. An orthodontic article comprising:

a bracket having a body defining an archwire slot, and compositionally comprising a ceramic material having an average grain size of about 5.0 micrometers or less;

a metal liner disposed in the archwire slot, the metal liner having an occlusal wall, a gingival wall, and a lingual wall interconnecting the occlusal wall and the gingival wall; and

an Ag—Cu—Ti brazing alloy disposed in the archwire slot between the body of the bracket and at least one of the occlusal wall, the gingival wall, and the lingual wall of the metal liner, the Ag—Cu—Ti brazing alloy having a titanium concentration of at least about 1.5% by weight, based on an entire weight of the brazing alloy.

10. The orthodontic article of claim 9 , wherein the average grain size of the ceramic material is about 1.0 micrometer or less.

11. The orthodontic article of claim 9 , wherein the titanium concentration constitutes about 1.5% by weight to about 2.5% by weight of the Ag—Cu—Ti brazing alloy, based on the entire weight of the Ag—Cu—Ti brazing alloy.

12. The orthodontic article of claim 11 , wherein the titanium concentration constitutes about 1.5% by weight to about 2.0% by weight of the Ag—Cu—Ti brazing alloy, based on the entire weight of the Ag—Cu—Ti brazing alloy.

13. The orthodontic article of claim 9 , wherein the Ag—Cu—Ti brazing alloy comprises an Ag—Cu—Ti—Sn brazing alloy.

14. The orthodontic article of claim 9 , wherein the Ag—Cu—Ti brazing alloy is disposed within the archwire slot between the body of the bracket and the occlusal wall, the gingival wall, and the lingual wall of the metal liner.

15. A method of making an orthodontic article, the method comprising:

providing a bracket having a body defining an archwire slot, and compositionally comprising a ceramic material having an average grain size of about 5.0 micrometers or less;

placing a brazing alloy layer within the archwire slot, the brazing alloy layer being formed from a brazing alloy comprising silver, copper, and at least about 1.5% by weight titanium, based on an entire weight of the brazing alloy;

inserting a metal liner within the archwire slot such that the brazing alloy layer is disposed between the metal liner and at least one surface of the body of the bracket; and

brazing the metal liner to the at least one surface of the body with the brazing alloy.

16. The method of claim 15 , wherein the average grain size of the ceramic material is about 1.0 micrometer or less.

17. The method of claim 15 , wherein the titanium constitutes about 1.5% by weight to about 2.5% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

18. The method of claim 17 , wherein the titanium constitutes about 1.5% by weight to about 2.0% by weight of the brazing alloy, based on the entire weight of the brazing alloy.

19. The method of claim 15 , wherein the brazing alloy further comprises tin.

20. The method of claim 15 , wherein brazing the metal liner to the at least one surface of the body with the brazing alloy comprises heating the bracket, the brazing alloy layer, and the metal part to a temperature ranging from about 800° C. to about 850° C.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066444/0535 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2006
From: WYLLIE, WILLIAM E., II; PALMER, JOHN J.; THORSTENSON, GLENYS A.; ARNEY, DAVID S.; KELLY, JOHN S.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 018336/0284 →