Motorcycle tire
US-2016272009-A1 · Sep 22, 2016 · US
US10974552B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10974552-B2 |
| Application number | US-201715833481-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 6, 2017 |
| Priority date | Dec 7, 2016 |
| Publication date | Apr 13, 2021 |
| Grant date | Apr 13, 2021 |
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Official abstract text for this publication.
The pneumatic tire 1 for a motorcycle comprises a tread portion 2 comprising a belt layer 7, an inner liner layer 9 made of air impermeable rubber and arranged radially inside the belt layer 7, and a sealant layer 10 attached to a radially inner surface (9a) of the inner liner layer 9. The sealant layer 10 comprises a crown portion 10A arranged at a center thereof in a tire axial direction and a pair of shoulder portions 10B arranged on both sides of the crown portion 10A in the tire axial direction. Viscosity μ2 of the shoulder portions 10B is larger than viscosity μ1 of the crown portion 10A.
Opening claim text (preview).
The invention claimed is: 1. A pneumatic tire for a motorcycle comprising: a tread portion comprising: a belt layer, an inner liner layer made of air impermeable rubber and arranged on an inner side of the belt layer in a tire radial direction, and a sealant layer having fluidity and attached to a radially inner surface of the inner liner layer, wherein the tire tread width is the distance between the tire tread edges in the tire axial direction and is the maximum width of the tire, the sealant layer comprises a crown portion arranged at a center thereof in a tire axial direction and a pair of shoulder portions arranged on both sides of the crown portion in the tire axial direction, viscosity of the sealant shoulder portions is larger than viscosity of the sealant crown portion, and each of axially outer ends of the sealant layer is positioned axially inside a corresponding one of axially outer ends of the belt layer. 2. The pneumatic tire for a motorcycle according to claim 1 , wherein the sealant layer has sealant boundaries at which the viscosity differs between the sealant crown portion and the sealant shoulder portions, the belt layer comprises a crown region arranged radially outside the crown portion, the crown region extends from a point axially corresponding to one of the sealant boundaries to a point axially corresponding to another one of the sealant boundaries, and a distance in the tire radial direction between an axially outer end of the crown region and a radially outer end of the crown region is not greater than 12 mm. 3. The pneumatic tire for a motorcycle according to claim 1 , wherein the sealant layer is made of a composition including butyl rubber and polybutene, and the composition contains the polybutene in a range of from 100 to 400 parts by mass with respect to 100 parts by mass of the butyl rubber. 4. The pneumatic tire for a motorcycle according to claim 3 , wherein an average molecular weight of the polybutene is in a range of from 1000 to 4000. 5. The pneumatic tire for a motorcycle according to claim 1 , wherein an axial width of the sealant layer is in a range of from 23% to 86% of an axial width of the belt layer. 6. The pneumatic tire for a motorcycle according to claim 5 , wherein the axial width of the sealant layer is not less than 40% of the axial width of the belt layer. 7. The pneumatic tire for a motorcycle according to claim 1 , wherein the sealant layer has a thickness in a range of from 1 to 10 mm. 8. The pneumatic tire for a motorcycle according to claim 7 , wherein variation of the thickness of the sealant layer falls within a range of from 90% to 110%. 9. The pneumatic tire for a motorcycle according to claim 1 , wherein in a tire meridian section of the tire, a profile of a contact surface where the crown portion of the sealant layer and the inner liner layer contact each other has a radius of curvature in a range of from 20 to 250 mm. 10. The pneumatic tire for a motorcycle according to claim 9 , wherein in the tire meridian section of the tire, a profile of a contact surface where the shoulder portions of the sealant layer and the inner liner layer contact each other has a radius of curvature in a range of from 40 to 600 mm. 11. The pneumatic tire for a motorcycle according to claim 3 , wherein the composition includes at least one of butyl rubber and halogenated butyl rubber. 12. The pneumatic tire for a motorcycle according to claim 3 , wherein the polybutene kinematic viscosity at 100 degrees Celsius is not less than 3540 sq mm/s and not greater than 4010 sq mm/s. 13. The pneumatic tire for a motorcycle according to claim 12 , wherein the polybutene kinematic viscosity at 40 degrees Celsius is not less than 120,000 sq mm/s, and not greater than 200,000 sq mm/s. 14. The pneumatic tire for a motorcycle according to claim 2 , wherein the distance in the tire radial direction between the axially outer end of the crown region and the radially outer end of the crown region is not greater than 5 mm. 15. The pneumatic tire for a motorcycle according to claim 1 , wherein the belt layer is composed of a radially inner belt ply and a radially outer belt ply in which at least one belt cord is arranged at an angle in a range of from 5 to 45 degrees with respect to the tire equator, and the belt cords of the radially inner belt ply are arranged in directions so as to intersect with the belt cords of the radially outer belt ply. 16. The pneumatic tire for a motorcycle according to claim 15 , wherein the radially outer belt ply has a width in the tire axial direction larger than that of the radially inner belt ply. 17. The pneumatic tire for a motorcycle according to claim 16 , wherein the width in the tire axial direction of the radially outer belt ply is in a range of from 85% to 95% of the tread width.
provided partially, i.e. not covering the whole inner wall · CPC title
Sealing compositions or agents, e.g. combined with propellant agents · CPC title
Compositions of the inner liner · CPC title
disposed inside of the inner liner · CPC title
having four to nine carbon atoms · CPC title
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