Claims
- 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 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 without generating a significant flow of air toward the inductor.
- 2. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular shoulder, and 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 so as to define an annular space therebetween.
- 3. The method defined in claim 2 wherein said step (a) is performed by providing the first metallic component with a recess in an outer surface thereof.
- 4. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular step, and wherein said step (b) is performed by disposing the end of the second metallic component about the annular step so as to define an annular space therebetween.
- 5. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular step having a groove formed therein, and wherein said step (b) is performed by disposing the end of the second metallic component about the annular step so as to define an annular space therebetween.
- 6. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular step having a surface that extends radially relative to an axis of rotation of the first metallic component, and wherein said step (b) is performed by disposing the end of the second metallic component about the annular step so as to define an annular space therebetween.
- 7. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular step having a surface that is angled concavely radially relative to an axis of rotation of the first metallic component, and wherein said step (b) is performed by disposing the end of the second metallic component about the annular step so as to define an annular space therebetween.
- 8. The method defined in claim 1 wherein said step (a) is performed by providing the first metallic component with an annular shoulder, and 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 so as to define an annular space therebetween.
- 9. The method defined in claim 1 wherein said step (a) is performed by providing a space between the end of the second metallic component and the first portion of the first metallic component for retaining air therein.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of United States Provisional Application No. 60/362,215, filed Mar. 6, 2002, the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60362215 |
Mar 2002 |
US |