Claims
- 1. A wheel assembly for a wheeled vehicle, comprising:
a generally ring-shaped integrally formed outer tire member having a circumferential inner surface that is convexly shaped in a lateral direction; a generally ring-shaped integrally formed inner tire member having a circumferential outer surface that is concavely shaped in a lateral direction; the outer tire member being made of relatively hard and relatively rigid material, and the inner tire member being made of resilient material, such that the inner tire member may be deformed in order to position it inside the outer tire member with the convex inner surface of the outer tire member in interfitting relation to the concave outer surface of the inner tire member; a hub assembly having an outer circumferential surface; the inner tire member having an inner circumferential surface that is supported upon the hub assembly in engaging relationship with the outer circumferential surface of the hub assembly; and the hub assembly having securing means for maintaining a radially outward force upon the inner circumferential surface of the inner tire;
whereby the outer tire sustains the wear of a running surface upon which the vehicle may be supported, while the inner tire provides resilient support to the outer tire as well as a smooth ride for the vehicle.
- 2. A wheel assembly as in claim 1 wherein the inner tire is of substantially uniform thickness throughout its width, its inner circumferential surface being convex in a lateral direction.
- 3. A wheel assembly as in claim 2 wherein the hub assembly includes inner and outer generally ring-shaped hub members, each having an outer circumferential surface tapered lengthwise of the member, the two hub members having their smaller ends in end-to-end relationship so as to then form a hub whose outer circumferential surface is concave in a lateral direction; and
which further includes means for drawing the hub members laterally together so as to provide the radially outward force upon the inner circumferential surface of the inner tire.
- 4. A wheel assembly as in claim 3 wherein the two hub members are asymmetrical, the outer hub member having an opening for bearing support, and the inner hub member being in the form of a flange secured to the outer member about that opening.
- 5. A wheel assembly as in claim 1 wherein the hub assembly has openings on one side thereof near its radial center for the intake of cooling air, air outlet openings on its other side near its radial periphery, and internal passageways for movement of the air in a radially outward direction from the intake openings to the outlet openings while the wheel assembly is rotating.
- 6. A wheel assembly as in claim 1 wherein the inner and outer tire members are not bonded to each other or to the hub assembly, and wherein the support of the tire members upon the hub assembly depends upon the radially outward force that is applied by the hub assembly to the inner circumferential surface of the inner tire.
- 7. A wheel assembly as in claim 1 wherein the inner tire member has protuberances and recesses formed in at least one of its circumferential surfaces to provide space for radial compression and lateral expansion of the tire material, thereby ensuring resilient support of the outer tire member.
- 8. A wheel assembly as in claim 1 wherein the outer tire member tire has a circumferential outer surface that is concave in a lateral direction.
- 9. A wheel assembly as in claim 2 wherein the inner and outer tire members are not bonded to each other or to the hub assembly, and wherein the support of the tire members upon the hub assembly depends upon the radially outward force that is applied by the hub assembly to the inner circumferential surface of the inner tire.
- 10. A wheel assembly as in claim 2 wherein the inner tire member has protuberances and recesses formed in at least one of its circumferential surfaces to provide space for radial compression and lateral expansion of the tire material, thereby ensuring resilient support of the outer tire member.
- 11. A wheel assembly as in claim 2 wherein the outer tire member tire has a circumferential outer surface that is concave in a lateral direction.
- 12. A support mechanism for a wheeled vehicle comprising a wheel assembly as in claim 8, and a pipe-shaped rail supportingly engaged by the concave outer surface of the outer tire of the wheel assembly.
- 13. A generally ring-shaped outer tire member for a wheel assembly, being integrally formed of relatively hard and relatively rigid material so as to sustain the wear of a running surface upon which a vehicle may be supported, the outer tire member having a circumferential inner surface that is convexly shaped in a lateral direction and a circumferential outer surface that is concavely shaped in a lateral direction; so that an inner tire member having a laterally concave outer circumferential surface and made of resilient material may be deformed in order to position it inside the outer tire member with the convex inner surface of the outer tire member in interfitting relation to the concave outer surface of the inner tire member.
- 14. A wheel assembly as in claim 13 wherein the outer tire member tire has a circumferential outer surface that is concave in a lateral direction.
- 15. A support mechanism for a wheeled vehicle comprising a wheel assembly as in claim 14, and a pipe-shaped rail supportingly engaged by the concave outer surface of the outer tire of the wheel assembly.
- 16. A wheel assembly for a wheeled vehicle, comprising:
a generally ring-shaped integrally formed outer tire member having a laterally convex circumferential inner surface; a generally ring-shaped integrally formed inner tire member of substantially uniform thickness throughout its lateral width, having a laterally convex inner surface and concave outer surface; the outer tire member being made of relatively hard and relatively rigid material, and the inner tire member being made of resilient material, such that the inner tire member may be deformed in order to position it inside the outer tire member with the convex inner surface of the outer tire member in interfitting relation to the concave outer surface of the inner tire member; and a hub assembly adapted to engage and support the laterally convex inner circumferential surface of the inner tire and maintain a radially outward force thereon.
- 17. A wheel assembly as in claim 16 wherein the outer tire member has a circumferential outer surface that is concave in a lateral direction.
- 18. A support mechanism for a wheeled vehicle comprising a wheel assembly as in claim 17, and a pipe-shaped rail supportingly engaged by the concave outer surface of the outer tire of the wheel assembly.
- 19. A generally ring-shaped integrally formed inner tire member for a wheel assembly of a wheeled vehicle, the inner tire member having a circumferential outer surface that is concavely shaped in a lateral direction; being made of resilient material such that it may be deformed in order to position it in interfitting relation inside an outer tire member that has a laterally convex inner circumferential surface; the inner tire member having protuberances and recesses formed in at least one of its circumferential surfaces to permit radial compression and lateral expansion of the tire material.
- 20. An inner tire member as claimed in claim 19 which is of substantially uniform thickness throughout its lateral width and has a laterally convex inner surface as well as a laterally concave outer surface.
- 21. A hub assembly for a vehicle wheel comprising first and second hub members each integrally formed of metal:
the first hub member having a central hub part with a central opening for receiving a supporting bearing, a circumferentially extending outer collar, and a plurality of air intake openings in circumferentially spaced positions about the central hub part; the second hub member being essentially in the form of a circumferential flange mounted upon the collar of the first hub member, having an inner end adapted to engage the collar and an associated peripheral flange thereon to establish a predetermined position of the second hub member relative to the first hub member, the second hub member also having an outer end which is of greater diameter than its inner end; a plurality of matching bolt holes in the hub members for securing them together; the outer circumferences of the second hub member and the collar of the first hub member then together forming a concave circumferential surface for receiving a vehicle tire thereon; and each air intake opening being relatively small on one end of the first hub member and expanding to a larger exit opening on the other end of the first hub member and inside the second hub member.
- 22. A hub assembly as in claim 21 wherein the first hub member is an inboard member and the second hub member is an outboard member, the air intake openings being on the inboard side of the inboard hub member.
- 23. A tire assembly for a vehicle tire, comprising:
an integrally formed generally ring-shaped outer tire member having a circumferential inner surface; an integrally formed generally ring-shaped inner tire member having circumferential inner and outer surfaces; the outer tire member being made of relatively hard and relatively rigid material, and the inner tire member being made of a material that is essentially incompressible but rather easily deformable, such that the inner tire member may be deformed in order to position it inside the outer tire member with the inner surface of the outer tire member in interfitting relation to the outer surface of the inner tire member; and the inner tire member having protuberances and recesses formed in at least one of its circumferential surfaces to provide space for both radial compression and lateral expansion of its material, thereby ensuring resilient support of the outer tire member.
- 24. A tire assembly as in claim 23 wherein the inner tire member is made of polyurethane.
- 25. A tire assembly as in claim 23 wherein protuberances and recesses on the inner tire member are formed by circumferential grooves in at least one of its circumferential surfaces.
- 26. A tire assembly as in claim 23 wherein the outer tire member has a circumferential inner surface that is convexly shaped in a lateral direction, and the inner tire member has a circumferential outer surface that is concavely shaped in a lateral direction.
- 27. A tire assembly as in claim 23 wherein the outer tire member has a circumferential inner surface that is convexly shaped in a lateral direction, the inner tire member has a circumferential outer surface that is concavely shaped in a lateral direction, the inner tire member is made of polyurethane, and the protuberances and recesses on the inner tire member are formed by circumferential grooves in at least one of its circumferential surfaces.
- 28. A tire assembly as in claim 23 wherein the inner and outer tire members are not bonded to each other, whereby the support of the tire members depends upon a radially outward force that may be applied by a hub assembly to the inner circumferential surface of the inner tire member.
RELATED APPLICATION
[0001] This application claims the priority of U.S. Provisional Application No. 60/139,016 filed Jun. 14, 1999.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60139016 |
Jun 1999 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09502116 |
Feb 2000 |
US |
Child |
10061012 |
Jan 2002 |
US |