Claims
- 1. A tire, comprising at least one reinforcement structure anchored on either side of the tire in a bead, the base of which bead is intended to be mounted on a rim seat, each bead being extended radially towards the outside by a sidewall and comprising an axial bearing zone extending substantially between the base of the bead and a radial position of the bead substantially corresponding to the position of the radial edge of the hook of a rim for which said tire is adapted, the sidewalls radially towards the outside joining a tread, on the circumference of the tire the reinforcement structure extending from an end portion of said structure, arranged in the bead, towards said sidewall, at least one arrangement of main cords along a substantially circumferential path being arranged substantially adjacent to said end portion so as to form an anchoring zone, the arrangement of the cords of said at least one arrangement being such that the number of main cords arranged on the axially inner side relative to said structure is greater than the number of main cords arranged on the axially outer side relative to said structure, said main cords extending substantially radially to the inside of said axial bearing zone.
- 2. A tire according to claim 1, in which all of the arrangements of main cords are on the axially inner side relative to said structure.
- 3. A tire according to one of claims 1 and 2, also comprising at least one arrangement of secondary cords which are arranged axially to the outside relative to said reinforcement structure.
- 4. A tire according to claim 3, in which the secondary cords are non-metallic..
- 5. A tire according to claim 3, in which the main cords have a high elasticity modulus.
- 6. A tire according to claim 1, in which at least one portion of the main cords and the structure portion in the immediate vicinity of said cords are embedded in a rubber mix of a modulus greater than 25 MPa.
- 7. A tire according to claim 6, in which the modulus is greater than 40 MPa.
- 8. A tire according to of claim 1, in which the reinforcement structure comprises, at the level of the bead, at least two structure portions, with the interposition of an arrangement of cords between at least two of the adjacent portions.
- 9. A tire according to claim 3, in which the at least one arrangement of secondary cords is arranged so as to be in contact with at least one rubber mix of high modulus.
- 10. A tire according to claim 1, in which the at least one arrangement of cords is surrounded on one side by a first mix and on the other side by a second mix which is different from the first mix.
- 11. A tire according to claim 1, in which said end portion of said structure comprises a substantially radial meridian profile.
- 12. A tire, comprising at least one reinforcement structure anchored on either side of the tire in a bead, the base of which bead is intended to be mounted on a rim seat, each bead being extended radially towards the outside by a sidewall and comprising a zone of axial bearing extending substantially between the base of the bead and a radial position of the bead substantially corresponding to the position of the radial edge of the hook of a rim for which said tire is adapted, the sidewalls radially towards the outside joining a tread, on the circumference of the tire the reinforcement structure extending from an end portion of said structure, arranged in the bead, towards said sidewall, at least in the end portion said structure being axially separated into at least two portions, at least one arrangement of main cords along a substantially circumferential path being arranged substantially adjacent to at least one of the portions of said structure so as to form an anchoring zone, the arrangement of the cords of said at least one arrangement being such that the surface density of main cords arranged on the axially inner side relative to said structure is greater than the surface density of main cords arranged on the axially outer side relative to said structure, said main cords extending substantially radially to the inside of said zone of axial bearing.
- 13. A tire according to claim 12, in which all of the arrangements of main cords are on the axially inner side relative to said structure.
- 14. A tire according to one of claims 12 and 13, also comprising at least one arrangement of secondary cords which are arranged axially to the outside relative to said reinforcement structure.
- 15. A tire according to claim 14, in which the secondary cords are non-metallic.
- 16. A tire according to claim 14, in which the main cords have a high elasticity modulus.
- 17. A tire according to claim 12, in which at least one portion of the main cords and the structure portion in the immediate vicinity of said cords are embedded in a rubber mix of a modulus greater than 25 MPa.
- 18. A tire according to claim 17, in which the modulus is greater than 40 MPa.
- 19. A tire according to claim 12, in which the reinforcement structure comprises, at the level of the bead, at least two axially spaced structure portions, with the interposition of an arrangement of cords between at least two of the adjacent portions.
- 20. A tire according to claim 12, in which the at least one arrangement of secondary cords is arranged so as to be in contact with at least one rubber mix of high modulus.
- 21. A tire according to claim 12, in which the at least one arrangement of cords is surrounded on one side by a first mix and on the other side by a second mix which is different from the first mix.
- 22. A tire according to claim 12, in which said end portion of said structure comprises a substantially radial meridian profile.
- 23. A tire, comprising at least one reinforcement structure of the carcass type anchored on either side of the tire in a bead, the base of which bead is intended to be mounted on a rim seat, each bead being extended radially towards the outside by a sidewall, and comprising an axial bearing zone extending substantially between the bead base and a radial position of said bead substantially corresponding to the position of the radial edge of the hook of a rim for which said tire is adapted, the sidewalls radially towards the outside joining a tread, on the circumference of the tire the reinforcement structure extending from an end portion of said structure, arranged in the bead, towards said sidewall, at least one arrangement of main cords along a substantially circumferential path being arranged substantially adjacent to said end portion, each cord arranged on the axially inner side relative to said structure having a Young's modulus EI and a surface SI and each cord arranged on the axially outer side relative to said structure having a Young's modulus Ee and a surface Se, the arrangement of the cords of said at least one arrangement being such that Σ(EI×SI)int>Σ(Ee×Se)ext, said main cords extending substantially radially within said axial bearing zone.
- 24. A tire according to claim 23, in which the total of the products E×S is considered solely in the zone of the beads of the tire.
- 25. A tire according to one of claims 23 and 24, in which the value of Se is substantially zero.
- 26. A tire according to one of claims 23 and 24, in which all the arrangements of main cords are on the axially inner side relative to said structure.
- 27. A tire according to claim 23, also comprising at least one arrangement of secondary cords which are arranged axially to the outside relative to said reinforcement structure.
- 28. A tire according to claim 23, in which the secondary cords are non-metallic.
- 29. A tire according to claim 23, in which the main cords have a high elasticity modulus.
- 30. A tire according to claim 23, in which at least one portion of the main cords and the structure portion in the immediate vicinity of these cords are embedded in a rubber mix of a modulus greater than 25 MPa.
- 31. A tire according to claim 30, in which the modulus is greater than 40 MPa.
- 32. A tire according to claim 23, in which the reinforcement structure comprises, at the level of the bead, at least two axially spaced structure portions, with the interposition of an arrangement of cords between at least two of the adjacent portions.
- 33. A tire according to claim 23, in which the at least one arrangement of cords is surrounded on one side by a first mix and on the other side by a second mix which is different from the first mix.
- 34. A tire according to claim 23, in which said end portion of said structure comprises a substantially radial meridian profile.
Priority Claims (1)
Number |
Date |
Country |
Kind |
99/14621 |
Nov 1999 |
FR |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation of international application PCT/EP 00/11190 filed Nov. 13, 2000, published in French on May 25, 2001 as international publication WO 01/36219 A1, and claiming priority of French application 99/14621 filed Nov. 18, 1999.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/11190 |
Nov 2000 |
US |
Child |
10146010 |
May 2002 |
US |