Claims
- 1. A steering wheel for a motor vehicle comprising:
a core member having a given density, said core member having a substantially circular rim; at least one dampening element secured about said rim; wherein said dampening element is formed from a material having a density greater than the density of said core member, and is secured in vibrational communication with said core member.
- 2. The steering wheel of claim 1 wherein said circular rim defines a channel, and said dampening element is secured at least partially within said channel.
- 3. The steering wheel of claim 2 wherein said channel has a substantially U-shaped cross-section.
- 4. The steering wheel of claim 2 wherein said channel has a substantially T-shaped cross section.
- 5. The steering wheel of claim 1 wherein said dampening element is a substantially circular ring.
- 6. The steering wheel of claim 1 wherein said dampening element comprises a plurality of dampening elements positioned substantially radially symmetrically about said rim.
- 7. The steering wheel of claim 6 wherein said dampening element comprises a plurality of metal particles pressed into a channel defined by said rim.
- 8. The steering wheel of claim 1 wherein said dampening element is resiliently retained by an elastomeric material.
- 9. A method of manufacturing a steering wheel comprising the steps of:
providing a steering wheel core member having a circular rim section with a channel; positioning at least one dampening element in the channel, the dampening element having a density greater than the core member; positioning the core member and dampening element in a molding apparatus; and delivering a flowable curable material into the molding apparatus, wherein the cured material adheres to the dampening element and the core member, and secures the dampening element in vibrational communication with the core member.
- 10. A method according to claim 9 wherein the step of positioning at least one dampening element in the channel includes positioning a plurality of dampening elements therein.
- 11. A method according to claim 9 wherein the step of positioning at least one dampening element in the channel is characterized by positioning the dampening element in continuous contact with the core member.
- 12. A method according to claim 9 wherein the step of positioning at least one dampening element in the channel is characterized by placing a resilient material between the dampening element and the core member.
- 13. A method according to claim 9 wherein the delivering step is characterized by injecting a plural component elastomeric material composition into the mold apparatus.
- 14. A method according to claim 9 wherein the delivering step is characterized by delivering an elastomeric material that is resilient when cured.
- 15. A steering wheel produced by the process of claim 9.
- 16. A method of optimizing rotational vibration in a vehicle steering wheel comprising the steps of:
forming a steering wheel core member having a substantially circular rim portion, the core member being connectable to a vehicle steering system; and attaching mass to the core member by providing at least one dampening element, and securing it about the rim portion, the dampening element having a density greater than the density of the core member.
- 17. A method according to claim 16 wherein the attaching step is characterized by providing a metallic dampening element.
- 18. A method according to claim 16 wherein the attaching step is characterized by providing a non-metallic dampening element.
- 19. A method according to claim 16 wherein the attaching step is characterized by providing a plurality of dampening elements having different masses, selecting a first of the dampening elements having a first mass, and removably fastening the dampening element within the channel, the method further comprising the step of:
measuring rotational vibration of the core member with the first of the dampening elements fastened therein.
- 20. A method according to claim 20, further comprising the steps of:
removing the first of the dampening elements from the channel; selecting a second of the dampening elements, the second dampening element having a second mass different from the mass of the first dampening element; and measuring rotational vibration of the core member with the second of the dampening elements fastened therein.
- 21. A steering wheel formed according to a method comprising the method of claim 16.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This Application claims the benefit of the filing date of Provisional Application No. 60/390,076, filed Jun. 20, 2002, and herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60390076 |
Jun 2002 |
US |