IP Library › Granted Patent US 12,304,253
Granted Patent B2
US 12,304,253 · App. 17/169,764 · Granted May 20, 2025

Pneumatic tire

Inventors: Jean-Claude Patrice Philippe Griffoin (Mertzig, LU); Bodo Ahrens (Trier, DE); Adrian Florin Nicula (Luxembourg, LU); Andreas Frantzen (Trier, DE)
Assignee: The Goodyear Tire & Rubber Company
B60C19/002B60C5/14B60C19/122
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Quick Facts
Patent No.
US 12,304,253
App. No.
17/169,764
Granted
May 20, 2025
Kind
B2
Abstract

The present invention is directed to a pneumatic tire comprising a tread portion, two bead portions, two sidewalls extending between the tread portion and the respective bead portions, an inner surface defining a tire cavity, a sealant material layer covering the inner surface radially below the tread portion within the tire cavity, and at least one noise dampening strip which is partially covering and attached to the sealant material on a radially inner side and along a circumferential direction of the sealant material layer. The sealant material layer has at least one plateau region supporting the noise dampening element and one or more bottom regions provided laterally beside the plateau region, and wherein the plateau region extends out of the bottom regions in a radially inner direction.

Claims (13)

1. A pneumatic tire comprising a tread portion, two bead portions, two sidewalls extending between the tread portion and the respective bead portions, an inner surface defining a tire cavity, a sealant material layer covering the inner surface radially below the tread portion within the tire cavity, a noise dampening strip which covers and is attached to the sealant material along a circumferential direction and on a radially inner side of the sealant material layer, wherein the sealant material layer has three bottom regions and two plateau regions, wherein the plateau regions provide support for the noise dampening strip, wherein the two plateau regions are separated from each other by a bottom region, wherein only the plateau regions of the sealant layer are in direct contact with the noise dampening strip, wherein the plateau regions extends only radially below the noise dampening strip and not axially beside the noise dampening strip, wherein the thickness of the plateau regions is 20% to 90% thicker than the thickness of the bottom regions, wherein the plateau regions have an essentially constant thickness, and wherein the sealant material layer has shoulder regions extending between the plateau regions and the bottom regions, and wherein the shoulder regions axially extend over less than 10% of the axial width of the sealant material layer.

2. The pneumatic tire of claim 1 wherein the noise dampening strip extends along a circumferential length which corresponds to at least 50% of an inner circumference of the tire measured along the inner surface at an axial center of the tire.

3. The pneumatic tire of claim 2 wherein the circumferential length corresponds to at least 80% of said inner circumference.

4. The pneumatic tire of claim 1 wherein the axial width of the noise dampening strip is within the range of 20% to 50% of the total axial width of the sealant material layer.

5. The pneumatic tire of claim 1 wherein the bottom regions have an essentially constant sealant material thickness measured perpendicular to the inner surface of the tire.

6. The pneumatic tire of claim 1 wherein the noise dampening strip is free of a coating or foil facing the sealant material layer and wherein the noise dampening strip is a polymeric foam material strip having a density within a range of 0.01 g/cm 3 to 1 g/cm 3 .

7. The pneumatic tire of claim 1 wherein a thickness of the plateau regions is at least 15% larger than a thickness of the bottom regions.

8. The pneumatic tire of claim 1 wherein the sealant material layer is comprised of (A) an axially adjacent sealant material strips extending circumferentially about an axis of the tire and along the inner surface of the tire or (B) one or more sealant material strips which are spirally wound about an axis of the tire and along the inner surface of the tire.

9. The pneumatic tire of claim 8 wherein the sealant material strips have a larger thickness in the plateau regions than in the bottom regions and wherein multiple layers of strips are arranged on top of each other in the plateau regions.

10. The pneumatic tire of claim 1 wherein the plateau regions have a radial thickness which is in a range of 3 mm to 10 mm and the bottom regions have a thickness which is in a range of 2 mm to 6 mm.

11. The pneumatic tire of claim 1 wherein the plateau regions have an essentially constant thickness, and wherein the thickness of the plateau regions is 30% to 80% greater than the thickness of the bottom regions.

12. The pneumatic tire of claim 1 wherein the thickness of the plateau regions is 30% to 80% thicker than the thickness of the bottom regions.

13. The pneumatic tire of claim 12 wherein the thickness of the plateau regions is 40% to 70% thicker than the thickness of the bottom regions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2021
From: GRIFFOIN, JEAN-CLAUDE PATRICE PHILIPPE; AHRENS, BODO; NICULA, ADRIAN FLORIN; FRANTZEN, ANDREAS
To: GOODYEAR TIRE & RUBBER COMPANY, THE
Reel/Frame 055189/0979 →
Continuity (2)
Provisional Application 62971460 · Feb 7, 2020
Related Publication 20210245556A1 · Aug 12, 2021
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