IP Library Granted Patent US 9,624,137
Granted Patent B2
US 9,624,137 · App. 14/292,804 · Granted Apr 18, 2017

Low temperature method for hermetically joining non-diffusing ceramic materials

Inventors: Alfred Grant Elliot (Palo Alto, CA); Brent Donald Alfred Elliot (Cupertino, CA); Frank Balma (Los Gatos, CA); Richard Erich Schuster (Milpitas, CA); Dennis George Rex (Williams, OR); Alexander Veytser (Mountain View, CA)
Assignee: Component Re-Engineering Company, Inc.
C04B37/006B23K1/008B23K1/0016B23K1/19B23K1/20B23K3/087B23K35/005B23K35/286B23K35/38B32B9/005B32B9/04B32B9/041B32B15/20C04B35/645C04B37/001H01L21/68785H01L21/68792C04B2235/6562C04B2235/6565C04B2235/6567C04B2235/6581C04B2235/6582C04B2235/945C04B2237/121C04B2237/122C04B2237/126C04B2237/127C04B2237/34C04B2237/343C04B2237/348C04B2237/36C04B2237/365C04B2237/366C04B2237/368C04B2237/592C04B2237/61C04B2237/64C04B2237/66C04B2237/68C04B2237/704C04B2237/708C04B2237/72C04B2237/76C04B2237/765C04B2237/80C04B2237/84F16B9/00F16B11/006Y10T403/46Y10T428/31504Y10T428/31678
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Quick Facts
Patent No.
US 9,624,137
App. No.
14/292,804
Granted
Apr 18, 2017
Kind
B2
Abstract

A method for the joining of ceramic pieces with a hermetically sealed joint comprising brazing a layer of joining material between the two pieces. The wetting and flow of the joining material is controlled by the selection of the joining material, the joining temperature, the joining atmosphere, and other factors. The ceramic pieces may be on a non-diffusable type, such as aluminum nitride, alumina, beryllium oxide, and zirconia, and the pieces may be brazed with an aluminum alloy under controlled atmosphere. The joint material is adapted to later withstand both the environments within a process chamber during substrate processing, and the oxygenated atmosphere which may be seen within the shaft of a heater or electrostatic chuck.

Claims (40)

1. A method for the joining of ceramic materials, said method comprising the steps of:

placing an aluminum brazing element between an interface area of a first ceramic piece and an interface area of a second ceramic piece to create a joining pre-assembly, wherein said second ceramic comprises beryllium oxide, wherein said aluminum has not diffused into said second ceramic piece, and wherein said aluminum brazing element comprises 99% by weight or greater aluminum;

placing the components of said joining pre-assembly into a process chamber;

removing oxygen from said process chamber;

heating at least said aluminum brazing element of said joining pre-assembly to a first joining temperature of between 770 C and 1200 C, thereby joining said first ceramic piece to said second ceramic piece with a hermetically sealed aluminum joint wherein said aluminum has not diffused into said second ceramic piece, and wherein the thickness of said final joint is greater than zero.

2. The method of claim 1 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 1×10E-4 Torr to said process chamber.

3. The method of claim 1 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 1×10E-5 Torr to said process chamber.

4. The method of claim 1 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with pure, dehydrated inert gas.

5. The method of claim 1 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with purified hydrogen.

6. The method of claim 3 wherein the step of removing oxygen from said process chamber further comprises placing said joining pre-assembly in a zirconium inner chamber within said process chamber.

7. The method of claim 1 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 10 minutes and 2 hours.

8. The method of claim 1 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 30 minutes and 1 hour.

9. A method for the joining of ceramic materials, said method comprising the steps of:

placing an aluminum brazing element in a joint interface area between a first ceramic piece and a second ceramic piece to create a joining pre-assembly, wherein said aluminum brazing element comprises 99% by weight or greater aluminum, wherein said first ceramic comprises a ceramic from the group of beryllium oxide, and zirconia, and said second ceramic comprises a ceramic from the group of aluminum nitride, alumina, beryllium oxide, and zirconia;

placing the components of said joining pre-assembly in a process chamber; and

heating at least said aluminum brazing element of said joining pre-assembly to a first joining temperature of between 770 C and 1200 C, thereby joining said first ceramic piece to said second ceramic piece with an aluminum joint while maintaining a minimum joint thickness by using a plurality of standoffs of a first thickness, wherein the thickness of said joint is maintained during said heating to be greater than or equal to said first thickness, said first thickness being greater than zero, wherein said brazing element prior to brazing is of a second thickness greater than said first thickness, wherein said aluminum has not diffused into said first ceramic piece or said second ceramic piece.

10. The method of claim 9 further comprising the step of removing oxygen from said process chamber.

11. The method of claim 10 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 5×10E-5 Torr to said process chamber.

12. The method of claim 10 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 1×10E-4 Torr to said process chamber.

13. The method of claim 10 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with pure, dehydrated inert gas.

14. The method of claim 10 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with purified hydrogen.

15. The method of claim 10 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 10 minutes and 4 hours.

16. The method of claim 10 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 25 minutes and 1 hour.

17. A method for the joining of ceramic materials, said method comprising the steps of:

placing an aluminum brazing element in a joint interface area between a first ceramic piece and a second ceramic piece to create a joining pre-assembly, wherein zirconia, and said second ceramic comprises a ceramic from the group of beryllium oxide, and zirconia;

placing the components of said joining pre-assembly in a process chamber; and

heating at least said aluminum brazing element of said joining pre-assembly to a first joining temperature of between 770 C and 1200 C, thereby joining said first ceramic piece to said second ceramic piece with an aluminum joint while maintaining a minimum joint thickness by using a plurality of standoffs of a first thickness, wherein the thickness of said joint is maintained during said heating to be greater than or equal to said first thickness, said first thickness being greater than zero, wherein said brazing element prior to brazing is of a second thickness greater than said first thickness, wherein said aluminum has not diffused into said first ceramic piece or said second ceramic piece.

18. The method of claim 1 said first ceramic comprises a ceramic from the group of alumina, beryllium oxide, and zirconia, and wherein said aluminum has not diffused into said first ceramic piece or said second ceramic piece.

19. A method for the joining of ceramic materials, said method comprising the steps of:

placing an aluminum brazing element between an interface area of a first ceramic piece and an interface area of a second ceramic piece to create a joining pre-assembly, wherein said second ceramic comprises zirconia, wherein said aluminum has not diffused into said second ceramic piece, and wherein said aluminum brazing element comprises 99% by weight or greater aluminum;

placing the components of said joining pre-assembly into a process chamber;

removing oxygen from said process chamber;

heating at least said aluminum brazing element of said joining pre-assembly to a first joining temperature of between 770 C and 1200 C, thereby joining said first ceramic piece to said second ceramic piece with a hermetically sealed aluminum joint wherein said aluminum has not diffused into said second ceramic piece, and wherein the thickness of said final joint is greater than zero.

20. The method of claim 19 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 1×10E-4 Torr to said process chamber.

21. The method of claim 19 wherein the step of removing oxygen from said process chamber comprises applying a pressure of lower than 1×10E-5 Torr to said process chamber.

22. The method of claim 19 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with pure, dehydrated inert gas.

23. The method of claim 19 wherein the step of removing oxygen from said process chamber comprises purging and re-filling the chamber with purified hydrogen.

24. The method of claim 21 wherein the step of removing oxygen from said process chamber further comprises placing said joining pre-assembly in a zirconium inner chamber within said process chamber.

25. The method of claim 19 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 10 minutes and 2 hours.

26. The method of claim 19 wherein said step of heating said joining pre-assembly to a first joining temperature comprises heating said joining pre-assembly for a duration of between 30 minutes and 1 hour.

Assignments (3)
PATENT SECURITY AGREEMENT (SHORT FORM) Recorded Mar 3, 2021
From: WATLOW ELECTRIC MANUFACTURING COMPANY
To: BANK OF MONTREAL, AS ADMINISTRATIVE AGENT
Reel/Frame 055479/0708 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2020
From: COMPONENT RE-ENGINEERING COMPANY, INC.
To: WATLOW ELECTRIC MANUFACTURING COMPANY
Reel/Frame 053791/0283 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2015
From: ELLIOT, ALFRED GRANT; ELLIOT, BRENT A. E.; BALMA, FRANK; SCHUSTER, RICHARD ERICH; REX, DENNIS GEORGE; VEYTSER, ALEXANDER
To: COMPONENT RE-ENGINEERING COMPANY, INC.
Reel/Frame 035934/0780 →
Continuity (3)
Continuation In Part 13681875 · Nov 20, 2012
Continuation In Part 13543727 · Jul 6, 2012
Related Publication 20150108203A1 · Apr 23, 2015