Tire comprising a tread formed by multiple elastomer blends

US9718312B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9718312-B2
Application numberUS-201314412008-A
CountryUS
Kind codeB2
Filing dateJun 27, 2013
Priority dateJul 5, 2012
Publication dateAug 1, 2017
Grant dateAug 1, 2017

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  1. Title

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A tire with a radial carcass reinforcement, having a crown reinforcement, itself capped radially by a tread connected to two beads by two sidewalls, the tread having at least two layers of blended elastomeric compounds that are radially superposed and have a voids ratio that is lower in the central part than at the axially outer parts. A first layer of blended elastomeric compounds of the tread is made up of a first blended elastomeric compound forming a part extending at least into the region of the equatorial plane and of at least two axially outer parts formed of a second blended elastomeric compound, the first blended elastomeric compound having a macro dispersion Z-value higher than 65 and a maximum tan(δ) value, denoted tan(δ)max, lower than 0.120, and the complex dynamic shear modulus G* 1% at 100° C. of the second blended elastomeric compound having a value at least 10% higher than that of the complex dynamic shear modulus G* 1% at 100° C. of the first blended elastomeric compound.

First claim

Opening claim text (preview).

The invention claimed is: 1. A tire with a radial carcass reinforcement, comprising: a crown reinforcement, a tread radially capping the crown reinforcement and connected to two beads by two sidewalls, the tread comprising at least two layers of blended elastomeric compounds that are radially superposed and have a voids ratio that is lower in a central part than at axially outer parts, wherein a first layer of blended elastomeric compounds of the tread is made up of a first blended elastomeric compound forming a part extending at least into the region of the equatorial plane and of at least two axially outer parts formed of a second blended elastomeric compound, wherein the first blended elastomeric compound has a macro dispersion Z-value higher than 55 and a maximum tan(δ) value, denoted tan(δ)max, lower than 0.120 at 100° C., and wherein the complex dynamic shear modulus G* 1% at 100° C. of the second blended elastomeric compound has a value in MPa of at least 10% higher than that of the complex dynamic shear modulus G* 1% at 100° C. of the first blended elastomeric compound. 2. The tire according to claim 1 , wherein a ratio MSA300/MSA100 of the first blended elastomeric compound has a value at least 5% higher than that of a ratio MSA300/MSA100 of the second blended elastomeric compound. 3. The tire according to claim 1 , wherein the first blended elastomeric compound contains, by way of reinforcing filler, at least carbon black used at a content of between 10 and 70 phr, and wherein the carbon black has a BET specific surface area higher than 100 m 2 /g. 4. The tire according to claim 1 , wherein the first blended elastomeric compound contains, by way of a cut of carbon black, with a BET specific surface area higher than 100 m 2 /g, and of a white filler, wherein the reinforcing filler is used at a content of between 10 and 90 phr, and wherein the ratio of carbon black to white filler is higher than 2.7. 5. The tire according to claim 1 , wherein the complex dynamic shear modulus G* 1% at 100° C. of the second blended compound is higher than 1.6. 6. The tire according to claim 1 , wherein the complex dynamic shear modulus G* 1% at 100° C. of the first blended compound is higher than 1.4. 7. The tire according claim 1 , wherein the first layer of blended elastomeric compound, made up of a first blended elastomeric compound forming a part that extends at least into the region of the equatorial plane and of at least two axially outer parts formed of a second blended elastomeric compound, forms the radially outer layer of the tread. 8. The tire according to claim 7 , wherein the at least two layers of blended elastomeric compounds includes a radially inner second layer in contact with the first layer, the radially inner second layer having a value of the complex dynamic shear modulus G* 1% at 100° C. at least 10% higher than that of the complex dynamic shear modulus G* 1% at 100° C. of the first blended elastomeric compound of the first layer. 9. The tire according to claim 1 , wherein the at least two layers of blended elastomeric compounds includes a radially outer second layer in contact with the first layer, forming the radially outer layer of the tread, the radially outer second layer having a macro dispersion Z-value higher than 55 and a maximum tan(δ) value, denoted tan(δ)max, lower than 0.120 at 100° C. 10. The tire according to claim 9 , wherein the tread comprises a radially inner third layer in contact with the first layer, and wherein the blended elastomeric compound that makes up the third layer has a value of the complex dynamic shear modulus G* 1% at 100° C. at least 10% higher than that of the complex dynamic shear modulus G* 1% at 100° C. of the first blended elastomeric compound of the first layer. 11. The tire according to claim 9 , wherein the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the second layer of blended elastomeric compound is greater than 10% of the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the first layer of blended elastomeric compound. 12. The tire according to claim 11 , wherein the tread further comprises a radially inner third layer in contact with the first layer, wherein the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the third layer of blended elastomeric compound is greater than 25% of the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the first layer of blended elastomeric compound. 13. The tire according to claim 1 , wherein the tire comprises an additional layer of a blended elastomeric compound in a radially innermost position of the tread, and wherein the blended elastomeric compound of the additional layer has a maximum tan(δ) value, denoted tan(δ)max, lower than 0.100 at 100° C. 14. The tire according to claim 5 , wherein the complex dynamic shear modulus G* 1% at 100° C. of the second blended compound is 2.4 or lower. 15. The tire according to claim 6 , wherein the complex dynamic shear modulus G* 1% at 100° C. of the first blended compound is 2 or lower. 16. The tire according to claim 10 , wherein the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the second layer of blended elastomeric compound is greater than 10% of the thickness, measured in the radial direction at the end of what in a meridian section of the tire is the radially outermost working layer, of the first layer of blended elastomeric compound.

Assignees

Inventors

Classifications

  • comprising different tread rubber layers · CPC title

  • with different base rubber layers in the axial direction · CPC title

  • with different cap rubber layers in the axial direction · CPC title

  • Compositions of the tread · CPC title

  • Thickness of the tread · CPC title

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What does patent US9718312B2 cover?
A tire with a radial carcass reinforcement, having a crown reinforcement, itself capped radially by a tread connected to two beads by two sidewalls, the tread having at least two layers of blended elastomeric compounds that are radially superposed and have a voids ratio that is lower in the central part than at the axially outer parts. A first layer of blended elastomeric compounds of the tread…
Who is the assignee on this patent?
Michelin & Cie, Michelin Rech Tech, Michelin Rech Tech
What technology area does this patent fall under?
Primary CPC classification B60C11/0058. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 01 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).