Claims
- 1. A method for assembling a wheel rim and a wheel disc together to produce a vehicle wheel comprising the steps of:(a) providing a wheel rim defining an axis and including an inboard tire bead seat retaining flange, an inboard tire bead seat, a well portion, an outboard tire bead seat, and an outboard tire bead seat retaining flange, the inboard tire bead seat retaining flange including a generally radially extending first inner surface, the well portion including a generally radially extending second inner surface, the outboard tire bead seat retaining flange including a generally radially extending third inner surface; (b) providing a wheel disc having a generally centrally located inner wheel mounting portion and an outer annular portion which terminates in a generally axially extending outer annular flange, the inner wheel mounting portion including an inboard mounting surface and an outboard mounting surface, the outer annular portion including an inner surface; (c) providing a wheel rim tooling station to support the wheel rim, the wheel rim tooling station including an upper wheel rim detail tooling member and a lower wheel rim detail tooling member, the upper wheel rim detail tooling member including an uninterrupted continuous annular tooling member, the lower wheel rim detail tooling member including an uninterrupted continuous annular tooling member; (d) providing a wheel disc tooling station to support the wheel disc, the wheel disc tooling station including an outer retainer, an inner retainer, a center pilot plug, and a bottom center detail tooling member, the outer retainer being operatively connected to and selectively moveable by a cylinder and including an uninterrupted continuous annular tooling member; (e) operating the wheel rim tooling station whereby the uninterrupted continuous annular tooling member of the upper wheel rim detail tooling member is operative to engage and support the first inner surface of the wheel rim around the entire periphery thereof, and the uninterrupted continuous annular tooling member of the lower wheel rim detail tooling member is operative to engage and support at least one of the second inner surface and the third inner surface of the wheel rim around the entire periphery thereof; (f) operating the wheel disc tooling station whereby the inner retainer and the bottom center detail tooling member are operative to engage and support the wheel disc at the inboard mounting surface and the outboard mounting surface, respectively, of the inner wheel mounting portion, and the uninterrupted continuous annular tooling member of the outer retainer is operative to engage and support the inner surface of the outer annular portion of the wheel disc around the entire periphery thereof; (g) selectively moving at least one of the wheel rim and the wheel disc toward one another to cause the outer annular flange of the wheel disc to engage an inner surface of the wheel rim in a press fit engagement therewith while supporting the wheel rim and the wheel disc as recited in steps (e) and (f), the wheel rim and the wheel disc being selectively moved to produce a desired lateral runout dimension defined between the inboard mounting surface of the wheel disc and the first inner surface of the inboard tire bead seat retaining flange of the wheel rim; (h) simultaneously with step (g), operating the cylinder of the wheel disc tooling station so as to apply a force against the inner surface of the outer annular portion of the wheel disc which is operative to counter an opposing force caused by the wheel rim during the press fit engagement of step (g) to thereby reduce the bending or flexing of the wheel disc in the region of the outer annular portion; and (i) subsequent to step (h), welding the wheel disc to the wheel rim to thereby permanently join the wheel rim and the wheel disc together and produce the vehicle wheel.
- 2. The method according to claim 1 wherein the upper wheel rim detail tooling member is selectively moveable and the lower wheel rim detail tooling member is selectively moveable.
- 3. The method according to claim 1 wherein the upper wheel rim detail tooling member includes a locating member adapted to extend through a valve stem opening provided in the wheel rim.
- 4. The method according to claim 1 wherein the center pilot plug is operatively connected to the inner retainer and moveable therewith.
- 5. The method according to claim 1 the outer retainer is selectively moveable, the inner retainer is selectively moveable, the center pilot plug is selectively moveable, and the bottom center detail tooling member is selectively moveable.
- 6. The method according to claim 1 wherein the center pilot plug defines an outer diameter which is slightly greater than an inner diameter defined by a center pilot hole of the wheel disc so as to be received therein in a slight interference fit therewith.
- 7. The method according to claim 1 wherein bottom center detail tooling member includes a locating member which is adapted to extend through a bolt hole opening provided in the wheel disc.
- 8. The method according to claim 1 wherein during step (g) the wheel rim is moved relative to the wheel disc.
- 9. A method for assembling a wheel rim and a wheel disc together to produce a vehicle wheel comprising the steps of:(a) providing a wheel rim defining an axis and including an inboard tire bead seat retaining flange, an inboard tire bead seat, a well portion, an outboard tire bead seat, and an outboard tire bead seat retaining flange, the inboard tire bead seat retaining flange including a generally radially extending first inner surface, the well portion including a generally radially extending second inner surface, the outboard tire bead seat retaining flange including a generally radially extending third inner surface; (b) providing a wheel disc having a generally centrally located inner wheel mounting portion and an outer annular portion which terminates in a generally axially extending outer annular flange, the inner wheel mounting portion including an inboard mounting surface and an outboard mounting surface, the outer annular portion including an inner surface; (c) providing a wheel rim tooling station to support the wheel rim, the wheel rim tooling station including an upper wheel rim detail tooling member and a lower wheel rim detail tooling member; (d) providing a wheel disc tooling station to support the wheel disc, the wheel disc tooling station including an outer retainer, an inner retainer, a center pilot plug, and a bottom center detail tooling member, the outer retainer being operatively connected to and selectively moveable by a cylinder and including an uninterrupted continuous annular tooling member; (e) operating the wheel rim tooling station whereby the upper wheel rim detail tooling member is operative to engage and support the first inner surface of the wheel rim, and the lower wheel rim detail tooling member is operative to engage and support at least one of the second inner surface and the third inner surface thereof; (f) operating the wheel disc tooling station whereby the inner retainer and the bottom center detail tooling member are operative to engage and support the wheel disc at the inboard mounting surface and the outboard mounting surface, respectively, of the inner wheel mounting portion, and the uninterrupted continuous annular tooling member of the outer retainer is operative to engage and support the inner surface of the outer annular portion of the wheel disc around the entire periphery thereof; (g) selectively moving at least one of the wheel rim and the wheel disc toward one another to cause the outer annular flange of the wheel disc to engage an inner surface of the wheel rim in a press fit engagement therewith while supporting the wheel rim and the wheel disc as recited in steps (e) and (f), the wheel rim and the wheel disc being selectively moved to produce a desired lateral runout dimension defined between the inboard mounting surface of the wheel disc and the first inner surface of the inboard tire bead seat retaining flange of the wheel rim; (h) simultaneously with step (g), operating the cylinder of the wheel disc tooling station so as to apply a force against the inner surface of the outer annular portion of the wheel disc which is operative to counter an opposing force caused by the wheel rim during the press fit engagement of step (g) to thereby reduce the bending or flexing of the wheel disc in the region of the outer annular portion; and (i) subsequent to step (h), welding the wheel disc to the wheel rim to thereby permanently join the wheel rim and the wheel disc together and produce the vehicle wheel.
- 10. The method according to claim 9 wherein the upper wheel rim detail tooling member is selectively moveable and the lower wheel rim detail tooling member is selectively moveable.
- 11. The method according to claim 9 wherein the upper wheel rim detail tooling member includes a locating member adapted to extend through a valve stem opening provided in the wheel rim.
- 12. The method according to claim 9 wherein the center pilot plug is operatively connected to the inner retainer and moveable therewith.
- 13. The method according to claim 9 the outer retainer is selectively moveable, the inner retainer is selectively moveable, the center pilot plug is selectively moveable, and the bottom center detail tooling member is selectively moveable.
- 14. The method according to claim 9 wherein the center pilot plug defines an outer diameter which is slightly greater than an inner diameter defined by a center pilot hole of the wheel disc so as to be received therein in a slight interference fit therewith.
- 15. The method according to claim 9 wherein bottom center detail tooling member includes a locating member which is adapted to extend through a bolt hole opening provided in the wheel disc.
- 16. The method according to claim 9 wherein during step (g) the wheel rim is moved relative to the wheel disc.
- 17. An apparatus for assembling a wheel rim and a wheel disc together to produce a vehicle wheel, the wheel rim defining an axis and including an inboard tire bead seat retaining flange, an inboard tire bead seat, a well portion, an outboard tire bead seat, and an outboard tire bead seat retaining flange, the inboard tire bead seat retaining flange including a generally radially extending first inner surface, the well portion including a generally radially extending second inner surface, the outboard tire bead seat retaining flange including a generally radially extending third inner surface, the wheel disc having a generally centrally located inner wheel mounting portion and an outer annular portion which terminates in a generally axially extending outer annular flange, the inner wheel mounting portion including an inboard mounting surface and an outboard mounting surface, the outer annular portion including an inner surface, the apparatus comprising:a wheel rim tooling station having an upper wheel rim detail tooling member and a lower wheel rim detail tooling member, said upper wheel rim detail tooling member including an uninterrupted continuous annular tooling member, said upper wheel rim detail tooling member and said lower wheel rim detail tooling member being selectively moveable toward and away from one another whereby said upper wheel rim detail tooling member is operative to engage and support the first inner surface of the wheel rim and said lower wheel rim detail tooling member is operative to engage and support at least one of the second inner surface and the third inner surface of the wheel rim prior to the assembling of the wheel rim and the wheel disc; and a wheel disc tooling station having an outer retainer, an inner retainer, a center pilot plug, and a bottom center detail tooling member, said outer retainer including an uninterrupted continuous annular tooling member, said outer retainer, said inner retainer, said center pilot plug, and said bottom center detail tooling member being selectively moveable so as to engage and support the wheel disc at least at the inboard mounting surface and the outboard mounting surface thereof prior to the assembling of the wheel rim and the wheel disc; wherein said outer retainer is operatively connected to a cylinder so as to apply a force against the inner surface of the outer annular portion of the wheel disc during the assembling of the wheel rim and the wheel disc which is operative to counter an opposing force caused by the wheel rim during the assembling of the wheel disc and the wheel rim to thereby reduce the bending or flexing of the wheel disc in the region of the outer annular portion.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of U.S. Provisional Application Serial No. 60/114,109, filed Dec. 29, 1998, and is a continuation of International Application No. PCT/US99/31283, filed Dec. 29, 1999.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
64-83402 |
Mar 1989 |
JP |
WO9915306 |
Apr 1999 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/114109 |
Dec 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/US99/31283 |
Dec 1999 |
US |
Child |
09/888135 |
|
US |