Claims
- 1. A metal and rubber composite comprising a rubber matrix reinforced with a metallic body adhering to the rubber matrix by means of an adhesive interphase, characterized by the following features:
a) the rubber matrix is based on diene elastomer; b) the metal is a carbon steel, the carbon content of which is between 0.35% and 1.20%; c) to constitute the adhesive interphase, this carbon steel is coated with an intermediate metallic layer bearing aluminium oxides or hydroxides, which itself is covered with an organosilane film providing, as coupling agent, the bond between the aluminium oxides or hydroxides, and the diene rubber matrix.
- 2. The composite according to claim 1, wherein the diene elastomer is selected from the group consisting of polybutadienes, natural rubber, synthetic polyisoprenes, butadiene copolymers, isoprene copolymers and mixtures of these elastomers.
- 3. The composite according to claim 1 or 2, wherein the carbon steel has a carbon content of between 0.5% and 1.1%.
- 4. The composite according to claim 1, wherein the metal of the intermediate layer is aluminium or an aluminium alloy.
- 5. The composite according to claim 1, wherein the organosilane coupling agent has the formula:
- 6. The composite according to claim 5, wherein the organosilane is selected from the group consisting of amino-(C1-C6)alkyl-(C1-C6)alkoxysilanes, acryloxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, methacryloxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, glycidoxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, mercapto-(C1-C6)alkyl-(C1-C6)alkoxysilanes, di- or polysulphides of (C1-C20)alkyl-(C1-C6)alkoxysilanes, maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, isomaleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, N-[(C1-C6)alkyl-(C1-C6)alkoxysilyl] maleamic acids, and mixtures of these organosilanes.
- 7. The composite according to claim 6, wherein the organosilane is an amino-(C1-C6)alkyl-(C1-C6)alkoxysilane or a maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilane.
- 8. The composite according to claim 7, wherein the organosilane is 3-aminopropyltriethoxy-silane or 3-maleimidopropyltriethoxysilane.
- 9. The composite according to claim 2, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers and mixtures of these elastomers.
- 10. The composite according to claim 9, wherein the diene elastomer is natural rubber.
- 11. The composite according to claim 1, wherein the rubber matrix furthermore comprises a reinforcing resin formed of a methylene acceptor and a methylene donor.
- 12. The composite according to claim 11, wherein the methylene acceptor is resorcinol.
- 13. The composite according to claim 11, wherein the methylene donor is hexamethylenetetramine (HMT) or hexamethoxymethylmelamine (H3M).
- 14. The composite according to claim 1, wherein the rubber matrix furthermore comprises a bismaleimide.
- 15. The composite according to claim 14, wherein the bismaleimide is selected from the group consisting of N,N′-ethylene-bismaleimides, N,N′-hexamethylene-bismaleimides, N,N′-(m-phenylene)-bismaleimides, N,N′-(p-phenylene)-bismaleimides, N,N′-(p-tolylene)-bismaleimides, N,N′-(methylenedi-p-phenylene)-bismaleimides, N,N′-(oxydi-p-phenylene)-bismaleimides and mixtures thereof.
- 16. The composite according to claim 11 or 14, wherein the reinforcing resin or the bismaleimide is present in an amount of between 0.1 and 20% by weight of rubber composition.
- 17. The composite according to claim 16, wherein the reinforcing resin or the bismaleimide is present in an amount of between 1% and 8% by weight of rubber composition.
- 18. The composite according to claim 1, wherein the aluminium oxides or hydroxides are selected from the group consisting of aluminas, aluminium tri-hydroxides, aluminium oxide-hydroxides and mixtures of these oxides or hydroxides.
- 19. The composite according to claim 4, wherein the aluminium alloy is selected from the group consisting of the binary alloys Al—Mg, Al—Cu, Al—Ni, Al—Zn and ternary alloys of Al and two of the elements Mg, Cu, Ni, and Zn.
- 20. The composite according to claim 19, wherein the aluminium alloy is an Al—Zn binary alloy.
- 21. An article or a semi-finished product made of rubber incorporating a composite according to claim 1.
- 22. A tire incorporating a metal and rubber composite comprising a rubber matrix reinforced with a metallic body adhering to the rubber matrix by means of an adhesive interphase, characterized by the following features:
a) the rubber matrix is based on diene elastomer; b) the metal is a carbon steel, the carbon content of which is between 0.35% and 1.20%; c) to constitute the adhesive interphase, this carbon steel is coated with an intermediate metallic layer bearing aluminium oxides or hydroxides, which itself is covered with an organosilane film providing, as coupling agent, the bond between the aluminium oxides or hydroxides on one hand, and the diene rubber matrix.
- 23. The tire according to claim 22, wherein the diene elastomer is selected from the group consisting of polybutadienes, natural rubber, synthetic polyisoprenes, butadiene copolymers, isoprene copolymers and mixtures of these elastomers.
- 24. The tire according to claim 22 or 23, wherein the carbon steel has a carbon content of between 0.5% and 1.1%.
- 25. The tire according to claim 22, wherein the metal of the intermediate layer is aluminium or an aluminium alloy.
- 26. The tire according to claim 22, wherein the organosilane coupling agent has the formula:
- 27. The tire according to claim 26, wherein the organosilane is selected from the group consisting of amino-(C1-C6)alkyl-(C1-C6)alkoxysilanes, acryloxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, methacryloxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, glycidoxy-(C1-C6)alkyl-(C1-C6)alkoxysilanes, mercapto-(C1-C6)alkyl-(C1-C6)alkoxysilanes, di- or polysulphides of (C1-C20)alkyl-(C1-C6)alkoxysilanes, maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, isomaleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, N-[(C1-C6)alkyl-(C1-C6)alkoxysilyl] maleamic acids, and mixtures of these organosilanes.
- 28. The tire according to claim 27, wherein the organosilane is an amino-(C1-C6)alkyl-(C1-C6)alkoxysilane or a maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilane.
- 29. The tire according to claim 28, wherein the organosilane is 3-aminopropyltriethoxy-silane or 3-maleimidopropyltriethoxysilane.
- 30. The tire according to claim 23, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers and mixtures of these elastomers.
- 31. The tire according to claim 30, wherein the diene elastomer is natural rubber.
- 32. The tire according to claim 22, wherein the rubber matrix furthermore comprises a reinforcing resin formed of a methylene acceptor and a methylene donor.
- 33. The tire according to claim 32, wherein the methylene acceptor is resorcinol.
- 34. The tire according to claim 32, wherein the methylene donor is hexamethylenetetramine (HMT) or hexamethoxymethylmelamine (H3M).
- 35. The tire according to claim 22, wherein the rubber matrix furthermore comprises a bismaleimide.
- 36. The tire according to claim 32 or 35, wherein the reinforcing resin or the bismaleimide is present in an amount of between 0.1 and 20% by weight of rubber composition.
- 37. The tire according to claim 22, wherein the aluminium oxides or hydroxides are selected from the group consisting of aluminas, aluminium tri-hydroxides, aluminium oxide-hydroxides and mixtures of these oxides or hydroxides.
- 38. The tire according to claim 25, wherein the aluminium alloy is selected from the group consisting of binary alloys Al—Mg, Al—Cu, Al—Ni, Al—Zn and ternary alloys of Al and two of the elements Mg, Cu, Ni, and Zn.
- 39. The tire according to claim 38, wherein the aluminium alloy is an Al—Zn binary alloy.
- 40. The tire according to claim 22, further comprising wherein the tire includes a bead zone including a reinforcement, wherein the composite is present in the reinforcement of the bead zone of the tire.
- 41. The tire according to claim 22, further comprising wherein the tire includes a carcass reinforcement, wherein the composite is present in the carcass reinforcement of the tire.
- 42. The tire according to claim 41, the rubber composition of the composite having, in the vulcanized state, a secant tensile modulus, at 10% elongation, which is less than 9 MPa.
- 43. The tire according to claim 42, the rubber composition of the composite having, in the vulcanized state, a secant tensile modulus, at 10% elongation, which is between 4 and 9 MPa.
- 44. The tire according to claim 22, further comprising wherein the tire includes a crown reinforcement, wherein the composite is present in the crown reinforcement of the tire.
- 45. The tire according to claim 44, wherein the rubber composition of the composite has, in the vulcanized state, a secant tensile modulus, at 10% elongation, which is greater than 9 MPa.
- 46. The tire according to claim 45, wherein the rubber composition of the composite has, in the vulcanized state, a secant tensile modulus, at 10% elongation, which is between 9 and 20 MPa.
- 47. A metallic body of carbon steel covered with an adhesive layer capable of adhering to a rubber matrix based on diene elastomer, characterized by the following features:
a) the carbon content of the steel is between 0.35% and 1.20%; b) the adhesive layer is formed of a metallic layer bearing aluminium oxides or hydroxides, which itself is covered with an organosilane film, as coupling agent for the bond between the aluminium oxides or hydroxides, and the diene rubber matrix.
- 48. The metallic body according to claim 47, wherein said metallic body is selected from the group consisting of wires, assemblies of wires and films.
- 49. The metallic body according to claim 47 or 48, wherein the carbon steel has a carbon content of between 0.5% and 11.1%.
- 50. The metallic body according to claim 47, wherein the metal of the intermediate layer is aluminium or an aluminium alloy.
- 51. The metallic body according to claim 47, wherein the organosilane coupling agent has the formula:
- 52. The metallic body according to claim 51, wherein the organosilane is selected from the group consisting of amino-(C1-C6)alkyl-(C1-C6)alkoxysilanes, acryloxy-(C1-C6)alkyl-(C1-C6)alkoxy-silanes, methacryloxy-(C1-C6)alkyl-(C1-C6)alkoxy-silanes, glycidoxy-(C1-C6)alkyl-(C,-C6)alkoxysilanes, mercapto-(C1-C6)alkyl-(C1-C6)alkoxy-silanes, di- or polysulphides of (C1-C20)alkyl-(C1-C6)alkoxy-silanes, maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, isomaleimido-(C1-C6)alkyl-(C1-C6)alkoxysilanes, N-[(C1-C6)alkyl-(C1-C6)alkoxysilyl] maleamic acids, and mixtures of these organosilanes.
- 53. The metallic body according to. Claim 52, wherein the organosilane is an amino-(C1-C6)alkyl-(C1-C6)alkoxysilane or a maleimido-(C1-C6)alkyl-(C1-C6)alkoxysilane.
- 54. The metallic body according to claim 53, wherein the organosilane is 3-aminopropyl-triethoxysilane or 3-maleimidopropyltriethoxysilane.
- 55. The metallic body according to claim 47, wherein the aluminium oxides or hydroxides are selected from the group consisting of aluminas, aluminium tri-hydroxides, aluminium oxide-hydroxides and mixtures of these oxides or hydroxides.
- 56. The metallic body according to claim 50, wherein the aluminium alloy is selected from the group consisting of the binary alloys Al—Mg, Al—Cu, Al—Ni, Al—Zn and ternary alloys of Al and two of the elements Mg, Cu, Ni, and Zn.
- 57. The metallic body according to claim 56, wherein the aluminium alloy is an Al—Zn binary alloy.
Priority Claims (1)
Number |
Date |
Country |
Kind |
FR00/10097 |
Jul 2000 |
FR |
|
Parent Case Info
[0001] The present application is a continuation of International Application No. Appl. PCT/EP01/08568, filed Jul. 25, 2001, published in French with an English Abstract on Feb. 7, 2002 under PCT Article 21(2), which claims priority to French Patent Application No. FR00/10097, filed Jul. 31, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/08568 |
Jul 2001 |
US |
Child |
10353144 |
Jan 2003 |
US |