Claims
- 1. A mounting rim designed to form a rolling assembly with a tire and an inflatable and inflated tread bearing support, and comprising on each side of the equatorial plane a rim seat inclined towards the outside and extended axially outwards by a projection or hump, wherein it comprises, axially towards the inside between each rim seat for the tire beads and the equatorial plane XX′, at least one truncated conical seat inclined inwards and making an angle different of 0° with a parallel to the axis of rotation and designed to receive a bead of the bearing support of the tire tread.
- 2. The rim according to claim 1, wherein each rim seat has a generatrix which makes with a line parallel to the rotation axis an angle δj greater than 0° and less than or equal to 20°.
- 3. The rim according to claim 2, wherein the diameters of the seats for the tire beads are equal, and wherein at least one mounting groove is arranged between the seats for the beads of the bearing support.
- 4. The rim according to claim 3, wherein the two seats are located on the same side of the rim, wherein the seats are designed respectively to receive a tire bead and a bead of the pneumatic bearing support, and wherein the seats are axially adjacent and have equal diameters.
- 5. The rim according to claim 3, wherein the two seats are connected by a truncated conical portion, whose generatrix, relative to a line parallel to the rotation axis, makes an angle βj of between 35° and 55° which is open radially towards the outside and axially inwards.
- 6. The rim according to claim 5, wherein the said truncated conical portion is extended axially by a cylindrical portion and the two portions serve to connect the two truncated conical seats.
- 7. The rim according to claim 5, wherein the seats for the beads of the bearing support are axially extended by the lateral walls of the groove of the rim.
- 8. The rim according to claim 6, wherein the diameter of the seats for the beads of the support is smaller than the diameter of the seats for the tire beads, and the cylindrical portion is axially connected to the seat for the bead of the support by a truncated conical portion whose generatrix, relative to the trace of a plane parallel to the equatorial plane, makes an angle ηj greater than 0° and less than or equal to 20°.
- 9. The rim according to claim 8, wherein the seats for the beads of the bearing support are axially extended by the lateral walls of the groove of the rim.
- 10. The rim according to claim 8, wherein the seats for the beads of the bearing support are directly connected to the bottom of the groove of the rim, and the bottom of the groove is provided with a second groove for mounting the beads of the bearing support.
- 11. The rim according to claim 2, wherein the diameters of the seats for the tire beads are unequal.
- 12. The rim according to claim 11, wherein the rim has no mounting groove for the tire beads.
- 13. The rim according to claim 11, wherein the diameters of the seats for the beads of the bearing support are unequal, the difference between the diameters of the seats for the beads being equal to the difference between the diameters of the seats for the tire beads.
- 14. A rolling assembly comprising a tire, an inflatable and inflated tread bearing support, and a rim according to claim 1.
- 15. The rolling assembly according to claim 14, wherein the tread bearing support is a toric membrane made of rubber impermeable to the usual inflation gases and inflated to a given pressure, provided with a cap radially covering a crown reinforcement, the said cap being connected via two supporting sidewalls to two beads, each bead being reinforced by an annular element designed to ensure the necessary tightness on the rim seats for the beads of the bearing support.
- 16. The rolling assembly according to claim 15, wherein the crown reinforcement of the toric membrane is a hoop reinforcement consisting of at least one ply of circumferential reinforcement elements, and the membrane is used with an inflation pressure between 2 and 5 times the tire inflation pressure of between 1 and 2 bar, and retains its shape and pressure when the tire is punctured with partial or total loss of pressure.
- 17. The rolling assembly according to claim 15, wherein the crown reinforcement of the toric membrane is a hoop reinforcement whose circumferential reinforcement elements rupture under a given tension higher than the sum of the tension produced by the centrifugal force to which the membrane may be subjected and the tension produced by a difference of inflation pressures of the order of 1 bar between the internal cavity of the said membrane and the internal cavity of the tire, and in the event that pressure in the tire cavity is lost, the membrane swells and expands circumferentially to fill the internal space initially occupied by the tire.
Priority Claims (1)
Number |
Date |
Country |
Kind |
00/02585 |
Feb 2000 |
FR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation under 35 U.S.C. §120 of international application Serial No. PCT/EP01/02077, filed Feb. 23, 2001 and published as WO 01/64459 on Sep. 7, 2001 in French, which further claims priority under 35 U.S.C. §119 of French application Serial No. 00/02585 filed Feb. 28, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/02077 |
Feb 2001 |
US |
Child |
10211655 |
Aug 2002 |
US |