IP Library Granted Patent US 9,272,368
Granted Patent B2
US 9,272,368 · App. 13/945,693 · Granted Mar 1, 2016

Method of joining two components using a welding process

Inventor: Christian Fuhrmann (Rommerskirchen, DE)
Assignee: Emerson Climate Technologies GmbH
B23K26/203B23K26/211B23K26/282B23K26/32B23K26/322B23K26/323B23K2201/06B23K2203/08B23K2203/12
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Quick Facts
Patent No.
US 9,272,368
App. No.
13/945,693
Granted
Mar 1, 2016
Kind
B2
Abstract

The present disclosure provides an improved welding process for joining two components of which at least one comprises a brass alloy. In one exemplary embodiment, an intermediate part that includes a metal material different from a brass alloy may be arranged between the components such that it is in contact with the components in marginal regions. The intermediate part may then be heated during the welding process such that it enters into a connection having material continuity with the components in the marginal regions.

Claims (12)

1. A method of joining two components ( 10 , 12 ) of which at least one comprises a brass alloy using a laser welding process, in which method an intermediate part ( 16 ) which is formed from a material comprising at least one of the following alloys: CuSn4, CuSn6, CuSn8, CuSn10 and CuSn12, is arranged between the components ( 10 , 12 ) such that it is in contact with the components ( 10 , 12 ) in marginal regions ( 18 , 20 ), and is heated during the welding process using a laser beam ( 24 ) which is generated by a laser such that it enters into a connection having material continuity with the components ( 10 , 12 ) in the marginal regions ( 18 , 20 ).

2. The method in accordance with claim 1 , wherein the intermediate part ( 16 ) is ring-shaped or in the form of a punched disk.

3. The method in accordance with claim 1 , wherein the thickness of the intermediate part ( 16 ) lies in the range from 0.1 mm to 2 mm.

4. The method in accordance with claim 1 , wherein the components are joined in a region at a join site ( 14 ).

5. The method in accordance with claim 4 , wherein a maximum outer dimension of the intermediate part ( 16 ) is larger than a maximum outer dimension of the components ( 10 , 12 ) in the region of the join site ( 14 ).

6. The method in accordance with claim 1 , wherein the intermediate part ( 16 ) is dimensioned and/or is positioned between the components ( 10 , 12 ) such that it projects beyond the components ( 10 , 12 ) before the welding process.

7. The method in accordance with claim 1 , wherein both components ( 10 , 12 ) comprise a brass alloy.

8. The method in accordance with claim 4 , wherein the components ( 10 , 12 ) are rotationally symmetrical at least in the region of the join site ( 14 ).

9. The method in accordance with claim 1 , wherein the laser beam ( 24 ) is directed to an exposed region ( 26 ) of the intermediate part ( 16 ).

10. The method in accordance with claim 1 , wherein the laser beam ( 24 ) is split into two part beams using a dual-focus optics.

11. The method in accordance with claim 1 , wherein the welding process is carried out using a defocused laser beam ( 24 ).

12. The method in accordance with claim 1 , wherein the welding process is carried out using an oscillating laser beam ( 24 ).

Assignments (2)
CHANGE OF NAME Recorded Oct 10, 2023
From: EMERSON CLIMATE TECHNOLOGIES GMBH
To: COPELAND EUROPE GMBH
Reel/Frame 065192/0181 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2014
From: FUHRMANN, CHRISTIAN
To: EMERSON CLIMATE TECHNOLOGIES GMBH
Reel/Frame 031936/0303 →
Priority Claims (1)
EP 12176930 · Jul 18, 2012 · regional
Continuity (1)
Related Publication 20140021176A1 · Jan 23, 2014