IP Library Granted Patent US 12,337,618
Granted Patent B2
US 12,337,618 · App. 17/595,816 · Granted Jun 24, 2025

Pneumatic tire

Inventors: Hiraku Koda (Kanagawa, JP); Ryohei Takemori (Kanagawa, JP); Yuki Sasaya (Kanagawa, JP)
Assignee: The Yokohama Rubber Co., LTD.
B60C11/1259B60C11/032B60C11/1204B60C11/1236B60C2011/0381B60C2011/1286B60C2011/129
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Quick Facts
Patent No.
US 12,337,618
App. No.
17/595,816
Granted
Jun 24, 2025
Kind
B2
Abstract

Provided is a pneumatic tire with wet steering stability performance and dry steering stability performance enhanced in a well-balanced manner. A dimple group is composed of a plurality of dimples ( 100 to 104 ) disposed at intervals and aligned in a tire circumferential direction. When the minimum center-to-center distance between different dimples ( 100, 102 ) in an identical dimple group is defined as K and the minimum center-to-center distance between dimples ( 104, 100 ) in different dimple groups is defined as L, the ratio L/K is 3.5 or more and 10.0 or less and the minimum center-to-center distance L is 20 mm or more and equal to or less than a ground contact length.

Claims (36)

1. A pneumatic tire, comprising:

a plurality of dimple groups formed in a tread surface,

the dimple groups being composed of a plurality of dimples disposed at intervals and aligned in a tire circumferential direction,

a ratio L/K being 3.5 or more and 7.0 or less, and

a minimum center-to-center distance L being 20 mm or more and equal to or less than a ground contact length,

where,

K is a minimum center-to-center distance between different dimples in an identical dimple group, and

L is the minimum center-to-center distance between dimples in different dimple groups, wherein

an inclined groove is formed in at least any one of regions bounded by two circumferential main grooves, the inclined groove comprising one end communicating with one of the two circumferential main grooves and another end terminating within a land portion or communicating with a main sipe,

a center of any one of the dimples in the dimple group is located within a range bounded by two parallel lines of the inclined groove that are parallel to a reference line of the inclined groove and located at a distance of 3 mm from the reference line of the inclined groove, and

the reference line of the inclined groove is a line connecting center points in a width direction at both ends of the inclined groove in an extension direction of the inclined groove in a case where the main sipe is not present, or in a case where the main sipe is present, the reference line of the inclined groove is a line connecting center points in a width direction at both ends of a recess portion consisting of the inclined groove and the main sipe.

2. The pneumatic tire according to claim 1 , wherein

an absolute value of an angle of a reference line with respect to a tire circumferential direction is 15° or less, the reference line connecting centers of two dimples in an identical dimple group, the two dimples having a largest center-to-center distance in a tire circumferential direction,

a shortest distance M between the reference line and an edge line of an adjacent groove is 1.5 mm or more and 10.0 mm or less, the adjacent groove being a groove closest to the dimple group.

3. The pneumatic tire according to claim 1 , wherein an adjacent groove that is a groove closest to the dimple group is a circumferential main groove.

4. The pneumatic tire according to claim 3 , wherein the circumferential main groove is formed in a region of 40% of a ground contact width centered on a tire equatorial plane CL.

5. The pneumatic tire according to claim 1 , further comprising at least one dimple group, in which centers of all dimples in the identical dimple group are located within a range bounded by two parallel lines parallel to a reference line and located at a distance of 2 mm from the reference line, the reference line connecting centers of two dimples in the identical dimple group, the two dimples having a largest center-to-center distance in the tire circumferential direction.

6. The pneumatic tire according to claim 1 , wherein, in every region bounded by two circumferential main grooves, centers of all dimples are located within a range bounded by two parallel lines parallel to a reference line and located at a distance of 2 mm from the reference line, the reference line connecting centers of two dimples in an identical dimple group, the two dimples having a largest center-to-center distance in the tire circumferential direction.

7. The pneumatic tire according to claim 1 , wherein a diameter of a circumscribing circle of the dimple is 20% or more and 70% or less of a width of an adjacent groove that is a groove closest to the dimple group.

8. The pneumatic tire according to claim 1 , wherein a diameter of a circumscribing circle of the dimple is 2.0 mm or more and 6.0 mm or less.

9. The pneumatic tire according to claim 1 , wherein a depth of the dimple is 5% or more and 40% or less of a depth of an adjacent groove that is a groove closest to the dimple group.

10. The pneumatic tire according to claim 1 , wherein a depth of the dimple is 0.5 mm or more and 3.0 mm or less.

11. The pneumatic tire according to claim 1 , wherein, in every region sandwiched between two circumferential main grooves, a ratio of an area of the dimples in the region to an area of the region is 10% or less.

12. The pneumatic tire according to claim 1 , wherein a vehicle mounting direction is designated, and a phase of a dimple group on a vehicle mounting inner side in the tire circumferential direction differs from a phase of a dimple group on a vehicle mounting outer side in the tire circumferential direction.

13. The pneumatic tire according to claim 1 , wherein a center of a dimple on a ground contact trailing edge in the dimple group is present in a range bounded by the two parallel lines of the inclined groove.

14. The pneumatic tire according to claim 1 , satisfying the following:

Arctan[ GD /( GW/ 2)]≤θ≤Arctan[ GD /( GW/ 2)]×1.3

where,

GW is a width of an adjacent groove,

GD is a depth of the adjacent groove, and

θ is a groove wall angle of the adjacent groove,

the adjacent groove being a groove closest to the dimple group.

15. The pneumatic tire according to claim 1 , comprising an inclined groove being formed therein, an inclined groove comprising one end communicating with either of two circumferential main grooves and another end terminating within a land portion or communicating with a main sipe,

the pneumatic tire further comprising:

a main sipe communicating with the inclined groove, and

a branch sipe branching from the main sipe.

Assignments (2)
CHANGE OF ADDRESS FOR ASSIGNEE Recorded Nov 18, 2023
From: THE YOKOHAMA RUBBER CO., LTD.
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 065626/0740 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: KODA, HIRAKU; TAKEMORI, RYOHEI; SASAYA, YUKI
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 058208/0129 →
Priority Claims (1)
JP 2019-104525 · Jun 4, 2019 · national
Continuity (1)
Related Publication 20220161606A1 · May 26, 2022
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