IP Library Granted Patent US 6,910,617
Granted Patent B2
US 6,910,617 · App. 10/382,108 · Granted Jun 28, 2005

Method for securing a yoke to a tube using magnetic pulse welding techniques

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Quick Facts
Patent No.
US 6,910,617
App. No.
10/382,108
Granted
Jun 28, 2005
Kind
B2
Abstract

A magnetic pulse welding operation is performed to secure first and second metallic components together, such as a yoke and a driveshaft tube in a vehicular driveshaft assembly. The yoke includes a first portion, such as a body portion, and a second portion, such as a pair of opposed yoke arms. The end of the driveshaft tube is disposed co-axially about the body portion of the yoke. An inductor axially is positioned co-axially about the overlapping portions of the end of the driveshaft tube and the body portion of the yoke. The inductor is energized to perform a magnetic pulse welding operation to secure the end of the driveshaft tube to the body portion of the yoke without generating a significant flow of air toward the inductor.

Claims (16)

1. A method of performing a magnetic pulse welding operation to secure first and second metallic components together comprising the steps of:

(a) providing a first metallic component including a first portion having a shoulder and a second portion;

(b) providing a second metallic component having an end;

(c) disposing the end of the second metallic component in an axially overlapping manner relative to the first portion of the first metallic component;

(d) providing an inductor axially relative to the end of the second metallic component and the first portion of the first metallic component; and

(e) energizing the inductor to perform a magnetic pulse welding operation to secure the end of the second metallic component to the first portion of the first metallic component and to cause the end of the second metallic component to engage the shoulder to prevent a significant flow of air toward the inductor.

2. The method defined in claim 1 wherein said step (c) is performed by disposing the end of the second metallic component in abutment with the shoulder provided on the first portion of the first metallic component.

3. The method defined in claim 1 wherein said step (c) is performed by disposing the end of the second metallic component axially beyond the shoulder provided on the first portion of the first metallic component.

4. The method defined in claim 3 wherein said step (a) is performed by providing the second portion of the first metallic component with a tapered surface, and wherein said step (c) is performed by disposing the end of the second metallic component in engagement with the tapered surface.

5. The method defined in claim 1 wherein said step (a) is performed by providing the first portion of the first metallic component with an outer surface having a recess, and wherein said step (e) is performed by causing the end of the second metallic component to engage the shoulder and a portion of the first metallic component to define a space that includes the recess.

6. The method defined in claim 1 wherein said step (a) is performed by providing a shoulder having a step, and wherein said step (e) is performed by causing the end of the second metallic component to engage the step of the shoulder and a portion of the first metallic component to define a space.

7. The method defined in claim 6 wherein said step (a) is performed by providing the step having a groove formed therein.

8. The method defined in claim 6 wherein said step (a) is performed by providing the step having a plurality of grooves formed therein.

9. The method defined in claim 6 wherein said step (a) is performed by providing the step having a generally axially facing surface that is angled relative to an axis of rotation defined by the first and second metallic components.

10. The method defined in claim 6 wherein said step (a) is performed by providing the step having a generally axially facing surface that is angled concavely relative to an axis of rotation defined by the first and second metallic components.

11. The method defined in claim 6 wherein said step (a) is performed by providing the step having a tapered surface, and wherein said step (c) is performed by disposing the end of the second metallic component in engagement with the tapered surface.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded Jun 29, 2020
From: CITIBANK, N.A.
To: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; DANA LIMITED; FAIRFIELD MANUFACTURING COMPANY, INC.
Reel/Frame 053309/0686 →
SECURITY AGREEMENT (BRIDGE) Recorded Apr 21, 2020
From: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; FAIRFIELD MANUFACTURING COMPANY, INC.
To: CITIBANK, N.A.
Reel/Frame 052459/0001 →
SECURITY AGREEMENT SUPPLEMENT Recorded Apr 21, 2020
From: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; FAIRFIELD MANUFACTURING COMPANY, INC.
To: CITIBANK, N.A.
Reel/Frame 052459/0224 →
INTELLECTUAL PROPERTY REVOLVING FACILITY SECURITY AGREEMENT Recorded Apr 25, 2008
From: DANA HOLDING CORPORATION; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; DANA DRIVESHAFT PRODUCTS, LLC; DANA DRIVESHAFT MANUFACTURING, LLC; DANA LIGHT AXLE PRODUCTS, LLC; DANA LIGHT AXLE MANUFACTURING, LLC; DANA SEALING PRODUCTS, LLC; DANA SEALING MANUFACTURING, LLC; DANA STRUCTURAL PRODUCTS, LLC; DANA THERMAL PRODUCTS, LLC; DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA COMMERCIAL VEHICLE PRODUCTS, LLC; DANA COMMERCIAL VEHICLE MANUFACTURING, LLC; SPICER HEAVY AXLE & BRAKE, INC.; DANA OFF HIGHWAY PRODUCTS, LLC; DTF TRUCKING INC.; DANA WORLD TRADE CORPORATION; DANA AUTOMOTIVE AFTERMARKET, INC.; DANA GLOBAL PRODUCTS, INC.; DANA STRUCTURAL MANUFACTURING, LLC
To: CITICORP USA, INC.
Reel/Frame 020859/0249 →
INTELLECTUAL PROPERTY TERM FACILITY SECURITY AGREEMENT Recorded Apr 25, 2008
From: DANA HOLDING CORPORATION; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; DANA DRIVESHAFT PRODUCTS, LLC; DANA DRIVESHAFT MANUFACTURING, LLC; DANA LIGHT AXLE PRODUCTS, LLC; DANA LIGHT AXLE MANUFACTURING, LLC; DANA SEALING PRODUCTS, LLC; DANA SEALING MANUFACTURING, LLC; DANA STRUCTURAL PRODUCTS, LLC; DANA THERMAL PRODUCTS, LLC; DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA COMMERCIAL VEHICLE PRODUCTS, LLC; DANA COMMERCIAL VEHICLE MANUFACTURING, LLC; SPICER HEAVY AXLE & BRAKE, INC.; DANA OFF HIGHWAY PRODUCTS, LLC; DTF TRUCKING INC.; DANA WORLD TRADE CORPORATION; DANA AUTOMOTIVE AFTERMARKET, INC.; DANA GLOBAL PRODUCTS, INC.; DANA STRUCTURAL MANUFACTURING, LLC
To: CITICORP USA, INC.
Reel/Frame 020859/0359 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2008
From: TORQUE-TRACTION TECHNOLOGIES, LLC
To: DANA AUTOMOTIVE SYSTEMS GROUP, LLC
Reel/Frame 020518/0949 →
MERGER Recorded Mar 2, 2006
From: TORQUE-TRACTION TECHNOLOGY, INC.
To: TORQUE-TRACTION TECHNOLOGIES LLC
Reel/Frame 017240/0259 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2003
From: YABLOCHNIKOV, BORIS A.
To: TORQUE-TRACTION TECHNOLOGIES, INC.
Reel/Frame 014206/0667 →