Claims
- 1. A wheel, comprising:
a hub; a plurality of roller mounting brackets coupled to said hub; and a plurality of rollers each rotatably coupled to at least one of said roller mounting brackets at a roller mounting angle between 20 and 90 degrees, said rollers comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and a contact surface of elastomeric material coupled to and radially disposed about said core with a volumetric shape such that the exterior profile of said contact surfaces of all said rollers forms a noncircilar profile when viewed from a perspective laterally displaced from and coincident with the centerline of said hub.
- 2. A wheel according to claim 1 wherein said contact surface of said rollers is disposed about said core with a radial diameter near said first end of said core that exceeds the radial diameter that would result in a circular profile when viewed from a perspective laterally displaced from and coincident with the centerline of said hub.
- 3. A wheel according to claim 1 wherein said rollers are further comprised of:
a roller segment, wherein said contact surface of said roller segment is disposed about said core with a radial diameter near an end of said roller segment that exceeds the radial diameter that would result in a circular profile when viewed from a perspective laterally displaced from and coincident with the centerline of said hub.
- 4. A wheel according to claim 1 wherein said contact surface of said rollers further comprises:
a first zone of elastomeric material disposed about said core, said first zone positioned between said first and second ends of said core, and a second zone of elastomeric material disposed about said core, said second zone positioned between said first zone and said first end of said core and having a material stiffness that is different from the material stiffness of said first zone.
- 5. A wheel according to claim 1 wherein each of said rollers further comprise:
a plurality of cores coupled to at least one of said mounting brackets; a first contact surface of elastomeric material disposed about one of said cores; and a second contact surface of elastomeric material disposed about a second of said cores, said second contact surface having a material stiffness that is different from the material stiffness of said first contact surface.
- 6. A wheel according to claim 1 wherein said contact surface of said roller further comprises:
a first zone with surface grooves disposed about said roller, said first zone positioned between said first and second ends of said core, and a second zone with no surface grooves, said second zone positioned between said first zone and said first end of said core.
- 7. A wheel according to claim 6 wherein said contact surface of said roller further comprises:
a third zone of elastomeric material disposed about said core, said third zone positioned between said first and second ends of said core, and a fourth zone of elastomeric material disposed about said core, said fourth zone positioned between said third zone and said first end of said core and having a material stiffness that is different from the material stiffness of said third zone.
- 8. A wheel according to claim 6 wherein said first zone and said second zone are on different segments of said roller. A wheel according to claim 1 wherein each of said rollers further comprise:
a plurality of cores coupled to at least one of said mounting brackets; a first contact surface of elastomeric material disposed about one of said cores and having surface grooves; and a second contact surface of elastomeric material disposed about a second of said cores, said second contact surface without surface grooves.
- 9. A wheel, comprising:
a hub; a plurality of roller mounting brackets coupled to said hub; and a plurality of rollers each rotatably coupled to at least one of said roller mounting brackets at a roller mounting angle between 20 and 90 degrees, said rollers comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and a contact surface of flexible material coupled to and radially disposed about said core, said contact surface comprising,
a first zone radially disposed about said core, said first zone positioned between said first and second ends of said core, and a second zone radially disposed about said core, said second zone positioned between said first zone and said first end of said core and possessing a material stiffness that is different from said first zone.
- 10. A wheel according to claim 9 wherein said first zone of said contact surface is made of a material that is different from that of said second zone.
- 11. A wheel according to claim 9 wherein said first zone and said second zone are on different segments of said roller.
- 12. A wheel according to claim 9 wherein said contact surface of said roller further comprises:
a third zone with surface grooves disposed about said roller, said third zone positioned between said first and second ends of said core, and a fourth zone with no surface grooves, said fourth zone positioned between said third zone and said first end of said core.
- 13. A wheel, comprising:
a hub; a plurality of roller mounting brackets coupled to said hub; and a plurality of rollers each rotatably coupled to at least one of said roller mounting brackets at a roller mounting angle between 20 and 90 degrees, said rollers comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and a contact surface of elastomenrc material coupled to and radially disposed about said core, said contact surface comprising,
a first zone with surface grooves disposed about said roller, said first zone positioned between said first and second ends of said core, and a second zone with no surface grooves, said second zone positioned between said first zone and said first end of said core.
- 14. A roller for an omni-directional wheel, comprising:
a core, said core having a first end and a second end; and a contact surface of flexible material coupled to and radially disposed about said core with a volumetric shape such that said contact surface forms a noncircular profile when mounted on an omni-directional wheel and viewed from a perspective laterally displaced from and coincident with the centerline of said omni-directional wheel.
- 15. A roller for an omni-directional wheel, comprising:
a core, said core having a first end and a second end; and a contact surface of flexible material coupled to and radially disposed about said core, said contact surface comprising;
a first zone radially disposed about said core between said first and second ends of said core, and a second zone radially disposed about said core between said first zone and said first end of said core and possessing a material stiffness that is different from said first zone.
- 16. A roller according to claim 15 wherein said first zone and said second zone are on different segments of said roller.
- 17. A roller for an omni-directional wheel, comprising:
a core, said core having a first end and a second end; and a contact surface of flexible material coupled to and radially disposed about said core, said contact surface comprising;
a first zone with surface grooves disposed about said roller positioned between said first and second ends of said core, and a second zone with no surface grooves positioned between said first zone and said first end of said core.
- 18. A roller according to claim 17 wherein said first zone and said second zone are on different segments of said roller.
- 19. A vehicle, comprising:
a chassis; an axle rotatably coupled to said chassis; and a wheel coupled to said axle, said wheel comprising;
a hub coupled to said axle, a plurality of rollers rotatably coupled to said hub, said rollers comprising,
a core rotatably coupled to said hub, said core having a first end and a second end, and a contact surface of flexible material coupled to and radially disposed about said core with a volumetric shape such that the exterior of said contact surface forms a noncircular profile when viewed from a perspective laterally displaced from and coincident with the centerline of said hub.
- 20. A vehicle, comprising:
a chassis; an axle rotatably coupled to said chassis; and a wheel coupled to said axle, said wheel comprising;
a hub coupled to said axle, a plurality of rollers rotatably coupled to said hub, said rollers comprising,
a core rotatably coupled to said hub, said core having a first end and a second end, and a contact surface of flexible material coupled to and radially disposed about said core, said contact surface comprising;
a first zone radially disposed about said core positioned between said first and second ends of said core, and a second zone radially disposed about said core, said second zone positioned between said first zone and said first end of said core and possessing a material stiffness that is different from said first zone.
- 21. A vehicle, comprising:
a chassis; an axle rotatably coupled to said chassis; and a wheel coupled to said axle, said wheel comprising;
a hub coupled to said axle, a plurality of rollers rotatably coupled to said hub, said rollers comprising,
a core rotatably coupled to said hub, said core having a first end and a second end, and a contact surface of flexible material coupled to and radially disposed about said core, said contact surface comprising,
a first zone with surface grooves disposed about said roller positioned between said first and second ends of said core, and a second zone with no surface grooves, said second zone positioned between said first zone and said first end of said roller.
- 22. A wheel, comprising:
a hub with an axis of rotation; a roller mounting bracket rotatably coupled to said hub; a first roller rotatably couple to said roller mounting bracket, said first roller having an axis of rotation that intersects with and is orthogonal to said hub's axis of rotation; and a second roller rotatably coupled to said roller mounting bracket, said second roller having an axis of rotation that intersects and is orthogonal to said hub's axis of rotation and is also orthogonal to said first roller's axis of rotation; said first and said second rollers each comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and; a contact surface of elastomeric material coupled to and radially, disposed about said core with a volumetric shape such that the exterior profile of said contact surfaces of all said rollers forms a noncircular profile when viewed from a perspective laterally displaced from and coincident with the centerline of said hub.
- 23. A wheel, comprising:
a hub with an axis of rotation; a roller mounting bracket rotatably coupled to said hub; a first roller rotatably couple to said roller mounting bracket, said first roller having an axis of rotation that intersects with and is orthogonal to said hub's axis of rotation; and a second roller rotatably coupled to said roller mounting bracket, said second roller having an axis of rotation that intersects and is orthogonal to said hub's axis of rotation and is also orthogonal to said first roller's axis of rotation; said first and said second rollers each comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and a contact surface of elastomeric material coupled to and radially disposed about said core comprising a first zone with surface grooves disposed about said roller, said first zone positioned between said first and second ends of said core, and a second zone with no surface grooves, said second zone positioned between said first zone and said first end of said core.
- 24. A wheel, comprising:
a hub with an axis of rotation; a roller mounting bracket rotatably coupled to said hub; a first roller rotatably couple to said roller mounting bracket, said first roller having an axis of rotation that intersects with and is orthogonal to said hub's axis of rotation; and a second roller rotatably coupled to said roller mounting bracket, said second roller having an axis of rotation that intersects and is orthogonal to said hub's axis of rotation and is also orthogonal to said first roller's axis of rotation; said first and said second rollers each comprising;
a core rotatably coupled to said roller mounting bracket, said core having a first end and a second end, and a contact surface of elastomeric material coupled to and radially disposed about said core comprising a first zone disposed about said roller, said first zone positioned between said first and second ends of said core, and a second zone with no surface grooves, said second zone positioned between said first zone and said first end of said core and possessing a material stiffness that is different from said first zone.
- 25. A method for designing an omni-directional wheel that will result in low vibration when rotated under load, comprising the steps:
determining the shape of the rollers that will result in a circular profile of an omni-directional wheel when viewed from a perspective removed from and coincident with the centerline of said omni-directional wheel; mathematically modeling the rollers as an assemblage of thin prismatic wheels aligned orthogonal to the centerline of the roller to estimate its compliance when contacting a flat running surface under load and at all angles of rotation; determining the coating thickness and exterior dimensions, surface grooves, and material properties required for each roller such that each roller exhibits the same compliance at all angles of wheel rotation when loaded; and adjusting the roller design to incorporate said changes in shape, surface grooving and material properties.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] U.S. application Ser. No. 09/056,109, filed Apr. 06, 1998.
Divisions (2)
|
Number |
Date |
Country |
Parent |
10003426 |
Dec 2001 |
US |
Child |
10273165 |
Oct 2002 |
US |
Parent |
09549998 |
Apr 2000 |
US |
Child |
10003426 |
Dec 2001 |
US |