IP Library › Granted Patent US 10,744,824
Granted Patent B2
US 10,744,824 · App. 14/786,761 · Granted Aug 18, 2020

Pneumatic tire

Inventor: Tokumasa Akashi (Copley, OH)
Assignee: BRIDGESTONE CORPORATION
B60C11/032B60C11/0327B60C11/04B60C11/1236B60C19/002B60C2011/0353
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,744,824
App. No.
14/786,761
Granted
Aug 18, 2020
Kind
B2
Abstract

This disclosure aims to provide a pneumatic tire having improved noise reduction performance exhibited by a resonator. The pneumatic tire according to this disclosure has at least two circumferential grooves extending continuously on a tread surface, and has a resonator disposed on a land portion partitioned by two circumferential grooves among the circumferential grooves, the resonator having an air chamber opening toward a land portion surface at a position spaced from the circumferential grooves, one a more one-side narrow necks connecting the air chamber to one circumferential groove of the two circumferential grooves, and one or more other-side narrow necks connecting the air chamber to the other circumferential groove, the one-side narrow neck and the other-side narrow neck having cross section areas approximately identical to each other, and an extending length of the one-side narrow neck and an extending length of the other-side narrow neck being different.

Claims (26)

1. A pneumatic tire, wherein:

in the case that the tire is mounted to a vehicle, a mounting direction of the tire with respect to the vehicle is specified such that one end side of contacting ends of both ends of a tread surface is a vehicle side, and the other end side of the contacting ends is an outer side of the vehicle, and wherein:

two one-side circumferential grooves extending continuously in a tread circumferential direction are disposed on one end side of the tread surface relative to a tire equatorial plane in a tire width direction, and on an one-side land portion partitioned between the two one-side circumferential grooves, an one-side resonator is disposed, the one-side resonator having an one-side air chamber opening to an one-side land portion surface at a position spaced from each of the two one-side circumferential grooves, one or more one-end side narrow necks connecting the one-side air chamber to an one-end side circumferential groove of the two one-side circumferential grooves, and one or more first tire equatorial plane side narrow necks connecting the one-side air chamber to a first tire equatorial plane side circumferential groove of the two one-side circumferential grooves,

the one-end side narrow neck and the first tire equatorial plane side narrow neck have cross section areas approximately identical to each other, and

an extending length of the one-end side narrow neck and an extending length of the first tire equatorial plane side narrow neck are different,

wherein:

a cross section area of the one-end side circumferential groove is relatively smaller than a cross section area of the first tire equatorial plane side circumferential groove, wherein:

the extending length of the one-end side narrow neck is longer than the extending length of the first tire equatorial plane side narrow neck,

wherein:

two other-side circumferential grooves extending continuously in the tread circumferential direction are disposed on the other end side of the tread surface relative to the tire equatorial plane in the tire width direction, and on an other-side land portion partitioned between the two other-side circumferential grooves, an other-side resonator is disposed, the other-side resonator having an other-side air chamber opening to an other-side land portion surface at a position spaced from each of the two other-side circumferential grooves, one or more other-end side narrow necks connecting the other-side air chamber to an other-end side circumferential groove of the two other-side circumferential grooves, and one or more second tire equatorial plane side narrow necks connecting the other-side air chamber to a second tire equatorial plane side circumferential groove of the two other-side circumferential grooves,

the other-end side narrow neck and the second tire equatorial plane side narrow neck have cross section areas approximately identical to each other, and

an extending length of the other-end side narrow neck and an extending length of the second tire equatorial plane side narrow neck are different,

wherein:

a cross section area of the second tire equatorial plane side circumferential groove is relatively smaller than a cross section area of the other-end side circumferential groove,

wherein:

the extending length of the second tire equatorial plane side narrow neck is longer than the extending length of the other-end side narrow neck, and

wherein:

a cross section area of the one-end side circumferential groove is relatively larger than a cross section area of the other-end side circumferential groove, and

a volume of the one-side air chamber of the one-side resonator is larger than a volume of the other-side air chamber of the other-side resonator.

2. The pneumatic tire according to claim 1 , wherein:

the extending length of the one-end side narrow neck is 1.1 to 3.2 times the extending length of the first tire equatorial plane side narrow neck.

3. The pneumatic tire according to claim 1 , wherein the number of the one-end side narrow necks is more than the number of the first tire equatorial plane side narrow necks.

4. The pneumatic tire according to claim 1 , wherein a plurality of resonators are provided at the both end sides relative to the tire equatorial plane in the tire width direction, and

a shape of the one-side resonator on the one end side relative to the tire equatorial plane and a shape of the other-side resonator on the other end side relative to the tire equatorial plane are symmetric to the tire equatorial plane.

5. The pneumatic tire according to claim 1 , wherein the other-end side narrow neck and the second tire equatorial plane side narrow neck extend from a same tread circumferential end portion of the other-side air chamber respectively in directions opposite to each other in the tread circumferential direction.

6. The pneumatic tire according to claim 1 , wherein the one-end side narrow neck and the first tire equatorial plane side narrow neck respectively extend in an opposite tread circumferential direction from both tread circumferential end portions of the one-side air chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2015
From: AKASHI, TOKUMASA
To: BRIDGESTONE CORPORATION
Reel/Frame 036870/0911 →
Priority Claims (1)
JP 2013-092913 · Apr 25, 2013 · national
Continuity (1)
Related Publication 20160075185A1 · Mar 17, 2016
Cited By (1)
US 12,472,779