Claims
- 1. An elastomeric composition useful for the manufacture of tires, based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent.
- 2. The composition according to claim 1, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers, and mixtures thereof.
- 3. The composition according to claim 1, wherein the reinforcing inorganic filler is present in an amount of between 10 and 200 parts by weight per one hundred parts of elastomer.
- 4. The composition according to claim 1, wherein the coupling agent is present in an amount greater than 0.5 parts by weight per one hundred parts of elastomer.
- 5. The composition according to claim 4, wherein the coupling agent is present in an amount of between 2 and 10 parts by weight per one hundred parts of elastomer.
- 6. The composition according to claim 1, wherein the ethylene double bond of the coupling agent is activated by at least one adjacent electron-attracting group selected from the group consisting of: radicals bearing at least one of the bonds C═O, C═C, C≡C, OH, OR (where “R” is an alkyl group), CN or OAr (where “Ar” is an aryl group); at least one sulfur atom; at least one nitrogen atom; and at least one halogen.
- 7. The composition according to claim 6, wherein the adjacent electron-attracting group is selected from the group consisting of: the radicals acyl (—COR), carbonyl (—C═O), carboxyl (—COOH), carboxy-ester (—COOR), carbamyl (—CO—NH2; —CO—NH—R; —CO—N—R2), alkoxy (—OR), aryloxy (—OAr), hydroxy (—OH), alkenyl (—CH═CHR), alkynyl (—C═CR), naphthyl (C10H7-), and phenyl (C6H5-); radicals bearing at least one sulfur atom; radicals bearing at least one nitrogen atom; and at least one halogen.
- 8. The composition according to claim 7, wherein the adjacent electron-attracting group is a carbonyl group (—C═O).
- 9. The composition according to claim 1, wherein the polyorganosiloxane comprises siloxyl units, which may be identical or different, having the formula (I):
- 10. The composition according to claim 9, wherein the radicals Y are selected from the group consisting of the radicals hydroxyl (OH) and alkoxyl (OR1), wherein R1 is a monovalent straight-chain or branched hydrocarbon group comprising from 1 to 15 carbon atoms.
- 11. The composition according to claim 10, wherein R1 is selected from the group consisting of C1-C6 alkyls, C2-C6 alkoxyalkyls, C5-C8 cycloalkyls, and the phenyl radical.
- 12. The composition according to claim 10, wherein the radicals Y are selected from the group consisting of hydroxyl (OH), C1-C3 alkoxyls (OR1), and mixtures thereof.
- 13. The composition according to claim 12, wherein the radicals Y are selected from the group consisting of hydroxyl, methoxyl, ethoxyl, and mixtures thereof.
- 14. The composition according to claim 9, wherein the radicals R2 are selected from the group consisting of methyl, ethyl, n-propyl, isobutyl, n-butyl, n-pentyl, cyclohexyl and phenyl.
- 15. The composition according to claim 14, wherein the radicals R2 are methyl radicals.
- 16. The composition according to claim 9, wherein the radical X is selected from the group consisting of radicals having the fomulae (X/a), (X/b) and (X/c):
- 17. The composition according to claim 16, wherein the radical X is selected from the group consisting of radicals having the formulae (II/1), (II/2), (II/3), (II/4) and (II/5):
- 18. The composition according to claim 17, wherein R3 represents an alkylene radical selected from the group consisting of —(CH2)2—; —(CH2)3—; —(CH2)4—; —CH2—CH(CH3)—; —(CH2)2—CH(CH3)—CH2—; —(CH2)3—O—(CH2)3—; —(CH2)3—O—CH2—CH(CH3)—CH2—; and —(CH2)3—O—CH2CH(OH)—CH2—;
- 19. The composition according to claim 18, wherein R3 is selected from the group consisting of —(CH2)2— and —(CH2)3—; and wherein R4, R5, R6, R7, R8, R9 and R10 are each selected from the group consisting of hydrogen and methyl.
- 20. The composition according to claim 9, wherein the polyorganosiloxane is an essentially linear polyorganosiloxane corresponding to the following average formula (III):
- 21. The composition according to claim 20, wherein m, n, p, q, r, s and t each represent integers or fractional numbers which meet the following cumulative conditions:
the ratio 100 s/(n+p+q+r+s+t) is at most equal to 20; the ratio 100 (m+p+r+s[when R11═Y]+t)/(n+p+q+r+s+t) is within a range from 4 to 100; and the ratio 100 (n+p+s[when R11═X])/(n+p+q+r+s+t) is within a range from 2 to 100.
- 22. The composition according to claim 1, wherein the coupling agent is present in an amount of between 0.5% and 20% by weight relative to the amount of reinforcing inorganic filler present.
- 23. The composition according to claim 1, wherein the reinforcing inorganic filler comprises silica.
- 24. The composition according to claim 1, wherein the reinforcing inorganic filler comprises alumina.
- 25. The composition according to claim 1, wherein the reinforcing inorganic filler constitutes the entire reinforcing filler.
- 26. The composition according to claim 1, wherein the reinforcing filler comprises a mixture of the reinforcing inorganic filler and carbon black.
- 27. The composition according to claim 2, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic cis-1,4 polyisoprenes, and mixtures thereof.
- 28. The composition according to claim 27, wherein the diene elastomer is natural rubber.
- 29. The composition according to claim 1, further comprising a covering agent for the inorganic filler.
- 30. The composition according to claim 29, wherein the covering agent is a hydroxylated polyorganosiloxane.
- 31. The composition according to claim 30, wherein the covering agent is an α,ω-dihydroxy-polyorganosiloxane.
- 32. A process for preparing a sulfur-vulcanizable rubber composition useful for the manufacture of tires, comprising:
incorporating into at least one isoprene elastomer, at least a reinforcing filler comprising a reinforcing inorganic filler and an (inorganic filler/isoprene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent; and kneading the entire mixture thermomechanically, in one or more stages, until a maximum temperature of between 100° C. and 190° C. is reached.
- 33. The process according to claim 32, wherein the ethylene double bond of the coupling agent is activated by at least one adjacent electron-attracting group selected from the group consisting of: radicals bearing at least one of the bonds C═O, C═C, C≡C, OH, OR (where “R” is an alkyl group), CN or OAr (where “Ar” is an aryl group); at least one sulfur atom; at least one nitrogen atom; and at least one halogen.
- 34. The process according to claim 33, wherein the adjacent electron-attracting group is a carbonyl group (—C═O).
- 35. The process according to claim 32, wherein the polyorganosiloxane comprises siloxyl units, which may be identical or different, having the formula (I):
- 36. The process according to claim 35, wherein the radicals R2 are selected from the group consisting of methyl, ethyl, n-propyl, isopropyl, n-butyl, n-pentyl, cyclohexyl and phenyl.
- 37. The process according to claim 35, wherein the radicals Y are selected from the group consisting of hydroxyl, methoxyl, ethoxyl, and mixtures thereof.
- 38. The process according to claim 35, wherein the radical X is selected from the group consisting of radicals having the following formulae (X/a), (X/b) and (X/c):
- 39. The process according to claim 38, wherein the radical X is selected from the group consisting of radicals having the formulae (II/1), (II/2), (II/3), (II/4), and (II/5):
- 40. The process according to claim 39, wherein R3 is selected from the group consisting of —(CH2)2— and —(CH2)3— and wherein R4, R5, R6, R7, R8, R9 and R10 are each selected from the group consisting of hydrogen and methyl.
- 41. The process according to claim 35, in which the polyorganosiloxane is an essentially linear polyorganosiloxane corresponding to the following average formula (III):
- 42. The process according to claim 41, wherein m, n, p, q, r, s and t each represent integers or fractional numbers which meet the following cumulative conditions:
the ratio 100 s/(n+p+q+r+s+t) is at most equal to 20; the ratio 100 (m+p+r+s[when R11═Y]+t)/(n+p+q+r+s+t) is within a range from 4 to 100; and the ratio 100 (n+p+s[when R11═X])/(n+p+q+r+s+t) is within a range from 2 to 100.
- 43. The process according to claim 32, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers, and mixtures thereof.
- 44. The process according to claim 32, wherein the coupling agent is present in an amount greater than 0.5 parts by weight per one hundred parts of elastomer.
- 45. The process according to claim 44, wherein the coupling agent is present in an amount of between 2 and 10 parts by weight per one hundred parts of elastomer.
- 46. A tire comprising an elastomeric composition based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent.
- 47. The tire according to claim 46, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers, and mixtures thereof.
- 48. The tire according to claim 46, wherein the coupling agent is present in an amount greater than 0.5 parts by weight per one hundred parts of elastomer.
- 49. The tire according to claim 48 wherein the coupling agent is present in an amount of between 2 and 10 parts by weight per one hundred parts of elastomer.
- 50. The tire according to claim 46, wherein the ethylene double bond of the coupling agent is activated by at least one adjacent electron-attracting group selected from the group consisting of: radicals bearing at least one of the bonds C═O, C═C, C≡C, OH, OR (where “R” is an alkyl group), CN or OAr (where “Ar” is an aryl group); at least one sulfur atom; at least one nitrogen atom; and at least one halogen.
- 51. The tire according to claim 50, wherein the adjacent electron-attracting group is selected from the group consisting of: the radicals acyl (—COR), carbonyl (—C═O), carboxyl (—COOH), carboxy-ester (—COOR), carbamyl (—CO—NH2; —CO—NH—R; —CO—N—R2), alkoxy (—OR), aryloxy (—OAr), hydroxy (—OH), alkenyl (—CH═CHR), alkynyl (—C═CR), naphthyl (C10H7-), and phenyl (C6H5-); radicals bearing at least one sulfur atom; radicals bearing at least one nitrogen atom; and at least one halogen.
- 52. The tire according to claim 51, wherein the adjacent electron-attracting group is a carbonyl group (—C═O).
- 53. The tire according to claim 46, wherein the polyorganosiloxane comprises siloxyl units, which may be identical or different, having the formula (I):
- 54. The tire according to claim 53, wherein the radicals Y are selected from the group consisting of the radicals hydroxyl (OH) and alkoxyl (OR1), wherein R1 is a straight-chain or branched monovalent hydrocarbon group comprising from 1 to 15 carbon atoms.
- 55. The tire according to claim 54, wherein R1 is selected from the group consisting of C1-C6 alkyls, C2-C6 alkoxyalkyls, C5-C8 cycloalkyls and the phenyl radical.
- 56. The tire according to claim 54, wherein the radicals Y are selected from the group consisting of hydroxyl (OH), C1-C3 alkoxyls (OR1), and mixtures thereof.
- 57. The tire according to claim 53, wherein the radicals R2 are selected from the group consisting of methyl, ethyl, n-propyl, isobutyl, n-butyl, n-pentyl, cyclohexyl, and phenyl.
- 58. The tire according to claim 57, wherein the radicals R2 are methyl radicals.
- 59. The tire according to claim 53, wherein the radical X is selected from the group consisting of radicals having the following formulae (X/a), (X/b) or (X/c):
- 60. The tire according to claim 59, wherein the radical X is selected from the group consisting of radicals having the following formulae (II/1), (II/2), (II/3), (II/4), and (II/5):
- 61. The tire according to claim 60, wherein R3 represents an alkylene radical selected from the group consisting of —(CH2)2—; —(CH2)3—; —(CH2)4—; —CH2—CH(CH3)—; —(CH2)2—CH(CH3)—CH2—; —(CH2)3—O—(CH2)3—; —(CH2)3—O—CH2—CH(CH3)—CH2—; and —(CH2)3—O—CH2CH(OH)—CH2—;
wherein R4 and R5 are selected from the group consisting of a hydrogen atom, chlorine, and the radicals methyl, ethyl, n-propyl, and n-butyl; wherein R5 may also represent a COOR7 group, wherein R7 represents hydrogen or methyl; and wherein R6, R7, R8, R9 and R10 are selected from the group consisting of hydrogen and the radicals methyl, ethyl, n-propyl, and n-butyl, and wherein R8 and R9 may also form together and with the nitrogen atom a pyrrolidinyl or piperidyl ring.
- 62. The tire according to claim 61, wherein R3 is selected from the group consisting of —(CH2)2— and —(CH2)3— and wherein R4, R5, R6, R7, R8, R9 and R10 are each selected from the group consisting of hydrogen and methyl.
- 63. The tire according to claim 53, wherein the polyorganosiloxane is an essentially linear polyorganosiloxane corresponding to the following average formula (III):
- 64. The tire according to claim 63, wherein m, n, p, q, r, s and t each represent integers or fractional numbers which meet the following cumulative conditions:
the ratio 100 s/(n+p+q+r+s+t) is at most equal to 20; the ratio 100 (m+p+r+s[when R11═Y]+t)/(n+p+q+r+s+t) is within a range from 4 to 100; and the ratio 100 (n+p+s[when R11═X])/(n+p+q+r+s+t) is within a range from 2 to 100.
- 65. The tire according to claim 46, wherein the reinforcing inorganic filler comprises silica.
- 66. The tire according to claim 46, wherein the reinforcing filler comprises a mixture of the reinforcing inorganic filler and carbon black.
- 67. The tire according to claim 47, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic cis-1,4 polyisoprenes, and mixtures thereof.
- 68. The tire according to claim 46, wherein the composition further comprises a covering agent for the inorganic filler.
- 69. The tire according to claim 68, wherein the covering agent is a hydroxylated polyorganosiloxane.
- 70. The tire according to claim 69, wherein the covering agent is an α, ω-dihydroxy-polyorganosiloxane.
- 71. A tire tread comprising an elastomeric composition based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond(and is grafted to the silicon atoms of the coupling agent.
- 72. The tread according to claim 71, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic polyisoprenes, isoprene copolymers, and mixtures thereof.
- 73. The tread according to claim 71, wherein the coupling agent is present in an amount greater than 0.5 parts by weight per one hundred parts of elastomer.
- 74. The tread according to claim 73, wherein the coupling agent is present in an amount of between 2 and 10 parts by weight per one hundred parts of elastomer.
- 75. The tread according to claim 71, wherein the ethylene double bond of the coupling agent is activated by at least one adjacent electron-attracting group selected from the group consisting of: radicals bearing at least one of the bonds C═O, C═C, C≡C, OH, OR (where R is an alkyl group), CN or OAr (where Ar is an aryl group); at least one sulfur atom; at least one nitrogen atom; and at least one halogen.
- 76. The tread according to claim 75, wherein the adjacent electron-attracting group is selected from the group consisting of: the radicals acyl (—COR), carbonyl (—C═O), carboxyl (—COOH), carboxy-ester (—COOR), carbamyl (—CO—NH2; —CO—NH—R; —CO—N—R2), alkoxy (—OR), aryloxy (—OAr), hydroxy (—OH), alkenyl (—CH═CHR), alkynyl (—C═CR), naphthyl (C10H7-), and phenyl (C6H5-); radicals bearing at least one sulfur atom; radicals bearing at least one nitrogen atom; and at least one halogen.
- 77. The tread according to claim 76, wherein the adjacent electron-attracting group is a carbonyl group (—C═O).
- 78. The tread according to claim 71, wherein the polyorganosiloxane comprises siloxyl units, which may be identical or different, having the formula (I):
- 79. The tread according to claim 78, wherein the radicals Y are selected from the group consisting of the radicals hydroxyl (OH) and alkoxyl (OR1), wherein R1 is a straight-chain or branched monovalent hydrocarbon group comprising from 1 to 15 carbon atoms.
- 80. The tread according to claim 78, wherein R1 is selected from the group consisting of C1-C6 alkyls, C2-C6 alkoxyalkyls, C5-C8 cycloalkyls and the phenyl radical.
- 81. The tread according to claim 79, wherein the radicals Y are selected from the group consisting of hydroxyl (OH), C1-C3 alkoxyls (OR1), and mixtures thereof.
- 82. The tread according to claim 78, wherein the radicals R2 are selected from the group consisting of methyl, ethyl, n-propyl, isobutyl, n-butyl, n-pentyl, cyclohexyl and phenyl.
- 83. The tread according to claim 82, wherein the radicals R2 are methyl radicals.
- 84. The tread according to claim 78, wherein the radical X is selected from the group consisting of radicals having the formulae (X/a), (X/b), and (X/c):
- 85. The tread according to claim 84, wherein the radical X is selected from the group consisting of radicals having the following formulae (II/1), (II/2), (II/3), (II/4), and (II/5):
- 86. The tread according to claim 85, wherein R3 represents an alkylene radical selected from the group consisting of —(CH2)2—; —(CH2)3—; —(CH2)4—; —CH2—CH(CH3)—; —(CH2)2—CH(CH3)—CH2—; —(CH2)3—O—(CH2)3—; —(CH2)3—O—CH2—CH(CH3)—CH2—; and —(CH2)3—O— CH2CH(OH)—CH2—;
wherein R4 and R5 are selected from the group consisting of a hydrogen atom, chlorine, and the radicals methyl, ethyl, n-propyl, and n-butyl, and wherein R5 may also represent a COOR7 group, wherein R7 represents hydrogen or methyl; and wherein R6, R7, R8, R9 and R10 are selected from the group consisting of hydrogen and the radicals methyl, ethyl, n-propyl, and n-butyl, and wherein R8 and R9 may also form together and with the nitrogen atom a pyrrolidinyl or piperidyl ring.
- 87. The tread according to claim 86, wherein R3 is selected from the group consisting of —(CH2)2— and —(CH2)3— and wherein R4, R5, R6, R7, R8, R9 and R10 are each selected from the group consisting of hydrogen and methyl.
- 88. The tread according to claim 71, wherein the polyorganosiloxane is an essentially linear polyorganosiloxane corresponding to the following average formula (III):
- 89. The tread according to claim 88, wherein m, n, p, q, r, s and t each represent integers or fractional numbers which meet the following cumulative conditions:
the ratio 100 s/(n+p+q+r+s+t) is at most equal to 20; the ratio 100 (m+p+r+s[when R11═Y]+t)/(n+p+q+r+s+t) is within a range from 4 to 100; and the ratio 100 (n+p+s[when R11═X])/(n+p+q+r+s+t) is within a range from 2 to 100.
- 90. The tread according to claim 71, wherein the reinforcing inorganic filler comprises silica.
- 91. The tread according to claim 72, wherein the diene elastomer is selected from the group consisting of natural rubber, synthetic cis-1,4 polyisoprenes, and mixtures thereof.
- 92. The tread according to claim 71, wherein the composition further comprises a covering agent for the inorganic filler.
- 93. The tread according to claim 93, wherein the covering agent is a hydroxylated polyorganosiloxane.
Priority Claims (1)
Number |
Date |
Country |
Kind |
00/07879 |
Jun 2000 |
FR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of International Application Number PCT/EP01/06671, published in French on Dec. 20, 2001 as International Publication Number WO 01/96442 A1 and filed Jun. 13, 2001, which claims priority to French Patent Application Number 00/07879, filed on Jun. 16, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/06671 |
Jun 2001 |
US |
Child |
10320236 |
Dec 2002 |
US |