Claims
- 1. A method of making a control arm, in particular for an undercarriage of a motor vehicle, with the control arm having a connection tube provided on opposite ends with mounting eyes, each mounting eye including a sleeve, which has a protruding collar, and a bearing element, which is embedded in the sleeve, said method comprising the steps of:
sizing an elongate tubular member of circular cross section to a length plus overmeasure of a connection tube of a control arm; forming through extrusion or extrusion pressing a profile of a cross sectional configuration in accordance with a sleeve of the control arm; dividing the profile to form sleeve blanks which are each configured at an axial height commensurate with a height of the sleeve and include a protrusion; vulcanizing bearing elements in the form of rubber-metal elements into the sleeve blanks; clamping in an axially shiftable manner the sleeve blanks and the tubular member in a friction welding machine; machining the protrusion of the sleeve blanks to form a protruding collar with circular ring shaped end surface; friction welding the end surface of the sleeve blanks to circular ring shaped end surfaces of the tubular member; calibrating the joined sleeve blanks and the tubular member at their joints through cold upsetting; and smoothing the joints about their circumference.
- 2. The method of claim 1, wherein the tubular member is made of a light metal alloy or plastic.
- 3. The method of claim 1, wherein the tubular member is made through extrusion.
- 4. The method of claim 1, wherein the tubular member is made from a curved and longitudinally welded plate.
- 5. The method of claim 1, wherein at least one of the tubular member and the profile is made of an aluminum alloy containing, by weight percent,
- 6. The method of claim 1, wherein at least one of the tubular member and the profile is made of an aluminum alloy containing, by weight percent,
- 7. The method of claim 1, wherein the dividing step is implemented by sawing.
- 8. The method of claim 1m wherein the machining step is a process selected from the group consisting of turning and milling.
- 9. The method of claim 1m wherein the calibrating step is a process selected from the group consisting of a material removing process and rolling process.
- 10. A method of making a control arm, in particular for an undercarriage of a motor vehicle, with the control arm having a connection tube provided on opposite ends with mounting eyes, each mounting eye including a sleeve, which has a protruding collar, and a bearing element, which is embedded in the sleeve, said method comprising the steps of:
sizing a tubular member of circular cross section to a length plus overmeasure of a connection tube of a finished control arm; forming through extrusion or extrusion pressing a profile of a cross sectional configuration in accordance with a sleeve of the control arm; dividing the profile to form sleeve blanks which are each configured at an axial height commensurate with a height of the sleeve and include a protrusion; machining the protrusion of the sleeve blanks to form a protruding collar with a circular ring shaped end surface; vulcanizing bearing elements in the form of rubber-metal elements into the sized sleeve blanks to form mounting eyes; clamping in an axially shiftable manner the mounting eyes and the tubular member in a friction welding machine; welding by friction the end surface of the protruding collars to circular ring shaped end surfaces of the tubular member; calibrating the joined protruding collars and the tubular member at their joints through cold upsetting; and smoothing the joints about their circumference.
- 11. The method of claim 10, wherein at least one of the tubular member and the profile is made of an aluminum alloy containing, by weight percent,
- 12. The method of claim 10, wherein at least one of the tubular member and the profile is made of an aluminum alloy containing, by weight percent,
- 13. A control arm for an undercarriage of a motor vehicle, comprising:
a connection tube having opposite end surfaces of circular ring shaped configuration; a pair of mounting eyes, each of the mounting eyes including a sleeve having a protruding collar which has a circular ring shaped end surface, wherein the end surface of the protruding collar of one sleeve is joined by a friction welding process to one end surface of the connection tube, and the end surface of the protruding collar of the other sleeve is joined by a friction welding process to the other end surface of the connection tube; and a pair of rubber-metal elements, one rubber-metal element vulcanized into one sleeve, and the other rubber-metal element vulcanized into the other sleeve.
- 14. The control arm of claim 13, wherein at least one of the connection tube and the sleeves is made of a material selected from the group consisting of light metal alloy and plastic.
- 15. The control arm of claim 13, wherein at least one of the connection tube and the sleeves is made of an aluminum alloy containing, by weight percent, Si 0.59-0.81%, Mn 0.28-0.38%, Mg 0.22-0.30%, Fe 0.16-0.22%, the balance Al and incidental impurities during fusion welding.
- 16. The control arm of claim 13, wherein at least one of the connection tube and the sleeves is made of an aluminum alloy containing, by weight percent, Si 0.69%, Mn 0.33%, Mg 0.26%, Fe 0.20%, the balance Al and incidental impurities during fusion welding.
- 17. A control arm for an undercarriage of a motor vehicle produced by the method of claim 1.
- 18. A control arm for an undercarriage of a motor vehicle produced by the method of claim 4.
- 19. A method of making a control arm, comprising the steps of:
extruding an elongate tubular member of circular cross section with opposite circular ring shaped end faces; dividing an extruded tubular profile to form a plurality of sleeve blanks, each formed with a protrusion; vulcanizing a rubber-metal element into the sleeve blanks; clamping two sleeve blanks and the tubular member in a friction welding machine; machining the protrusion of the sleeve blanks to form a protruding collar with circular ring shaped end surface; and friction welding the end surface of one sleeve blank to one circular ring shaped end surface of the tubular member and friction welding the end surface of the other sleeve blank to the other circular ring shaped end surface of the tubular member.
- 20. A method of making a control arm, comprising the steps of:
extruding an elongate tubular member of circular cross section with opposite circular ring shaped end faces, dividing an extruded tubular profile to form a plurality of sleeve blanks, each formed with a lateral protrusion; machining the protrusion of the sleeve blanks to form a protruding collar with circular ring shaped end surface vulcanizing a rubber-metal element into the sleeve blanks; clamping two sleeve blanks and the tubular member in a friction welding machine; and friction welding the end surface of one sleeve blank to one circular ring shaped end surface of the tubular member and friction welding the end surface of the other sleeve blank to the other circular ring shaped end surface of the tubular member.
Priority Claims (2)
Number |
Date |
Country |
Kind |
101 59 524.7 |
Dec 2001 |
DE |
|
102 55 049.2 |
Nov 2002 |
DE |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims the priority of German Patent Applications, Serial Nos. 101 59 524.7, filed Dec. 5, 2001, and 102 55 049.2, filed Nov. 26, 2002, pursuant to 35 U.S.C. 119(a)-(d), the disclosure of which is incorporated herein by reference.