Resin composition for tires and pneumatic tire
US-2024140139-A1 · May 2, 2024 · US
US9688852B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9688852-B2 |
| Application number | US-201214111613-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 16, 2012 |
| Priority date | Apr 14, 2011 |
| Publication date | Jun 27, 2017 |
| Grant date | Jun 27, 2017 |
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A rubber composition for the manufacture of tires is based on one or more diene elastomers, one or more reinforcing fillers, and a vulcanization system. The vulcanization system includes one or more thiazole compounds chosen from compounds having the following formula (I): Certain specific thiazole derivatives are described.
Opening claim text (preview).
The invention claimed is: 1. A rubber composition for the manufacture of tires, based on one or more diene elastomers, on one or more reinforcing fillers and on a vulcanization system, characterized in that the said vulcanization system comprises one or more thiazole compounds chosen from the compounds of following formula (I): in which: R 1 and R 2 independently represent a hydrogen atom or a C 1 -C 25 hydrocarbon group chosen from linear, branched or cyclic alkyl groups, aralkyl groups, alkylaryl groups and aryl groups and optionally interrupted by one or more heteroatoms, it being possible for R 1 and R 2 to together form a non-aromatic ring but it not being possible for R 1 and R 2 to together form an aromatic ring, A is chosen from: a hydrogen atom; a group in which: R 3 , R 4 and R 5 independently represent a C 1 -C 18 hydrocarbon group; y is an integer greater than or equal to 1; a group in which: R 6 is a C 1 -C 18 hydrocarbon group; a group in which: R 7 is a C 1 -C 18 hydrocarbon group; a group in which: Y is a C 1 -C 18 hydrocarbon chain, R 8 is a C 1 -C 18 hydrocarbon group; a group in which: X is a C 1 -C 18 hydrocarbon chain; R 9 and R 10 independently represent a C 1 -C 18 hydrocarbon group, and a group in which: R 11 is a hydrogen atom or a C 1 -C 18 hydrocarbon group. 2. The rubber composition according to claim 1 , characterized in that R 1 and R 2 independently represent a hydrogen atom or a methyl group. 3. The rubber composition according to claim 2 , characterized in that R 1 and R 2 each represent a hydrogen atom. 4. The rubber composition according to claim 2 , characterized in that R 1 and R 2 each represent a methyl group. 5. The rubber composition according to claim 1 , characterized in that A is chosen from the group the group and the group where y and R 3 to R 7 are as defined in claim 1 . 6. The rubber composition according to claim 1 , characterized in that the R 3 to R 11 groups are independently chosen from linear, branched or cyclic alkyl groups, aryl groups, aralkyl groups and alkylaryl groups. 7. The rubber composition according to claim 1 , characterized in that the X and Y groups are independently chosen from linear, branched or cyclic alkylene groups, arylene groups and alkylarylene groups. 8. The rubber composition according to claim 1 , characterized in that the said thiazole compound or compounds represent from 0.1 to 7 phr, parts by weight per hundred of diene elastomer. 9. The rubber composition according to claim 1 , characterized in that the diene elastomer or elastomers are selected from the group consisting of polybutadienes, natural rubber, synthetic polyisoprenes, butadiene copolymers, isoprene copolymers and the mixtures of these elastomers. 10. The rubber composition according to claim 1 , characterized in that the reinforcing filler or fillers are chosen from silica, carbon black and their mixtures. 11. The rubber composition according to claim 1 , characterized in that the reinforcing filler or fillers are present at a content of between 20 and 200 phr. 12. A process for preparing the rubber composition for the manufacture of tires as defined in claim 1 , characterized in that it comprises the following stages: incorporating the reinforcing filler or fillers in a diene elastomer during a first stage, the reinforcing filler or fillers and the diene elastomer being kneaded thermomechanically, in one or more goes, until a maximum temperature of between 110° C. and 190° C. is reached; and subsequently incorporating, during a second stage, the vulcanization system and kneading the reinforcing filler or fillers, the diene elastomer, and the vulcanization system up to a maximum temperature of less than 110° C. 13. The process according to claim 12 , in which, between the thermomechanical kneading and the incorporation of the vulcanization system, the combined product is cooled to a temperature of less than or equal to 100° C. 14. A method of manufacturing a finished article or a semi-finished product intended for a motor vehicle ground-contact system comprising the step of incorporating the rubber composition according to claim 1 in the finished article or semi-finished product. 15. A finished article or semi-finished product intended for a motor vehicle ground-contact system comprising a rubber composition as defined in claim 1 . 16. A tire comprising a rubber composition as defined in claim 1 . 17. A tread comprising a rubber composition as defined in claim 1 .
Compositions of the tread · CPC title
Thiazoles · CPC title
Macromolecular compounds according to groups C08L7/00 - C08L49/00, or C08L55/00 - C08L57/00; Derivatives thereof · CPC title
Compositions of unspecified rubbers · CPC title
Compositions of homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, at least one having two or more carbon-to-carbon double bonds; Compositions of derivatives of such polymers (C08L45/00 takes precedence; of conjugated diene rubbers C08L9/00 - C08L21/00) · CPC title
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