IP Library Granted Patent US 11,034,190
Granted Patent B2
US 11,034,190 · App. 16/619,919 · Granted Jun 15, 2021

Pneumatic tire

Inventor: Hideki Hamanaka (Hiratsuka, JP)
B60C11/0302B60C11/04B60C11/1204B60C11/124B60C11/1263B60C11/1281B60C2011/1213B60C2011/1245
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 11,034,190
App. No.
16/619,919
Granted
Jun 15, 2021
Kind
B2
Abstract

A pneumatic tire includes: a rib defined by a circumferential main groove; circumferential sipes formed in the rib at intervals in the circumferential direction; rib edge sipes formed in the rib aligning in the circumferential direction, each of the rib edge sipes terminating in the rib opening to the circumferential main groove; and first and second narrow grooves extending in the circumferential direction, each of the first and second narrow grooves having a groove depth shallower than depths of the circumferential sipes and the rib edge sipes, the first narrow grooves having ends connected to one of the circumferential sipes adjacent to each other in the circumferential direction and the second narrow grooves each including an inner connecting portion connected to one of the first narrow shallow grooves and including an outer connecting portion connected to one of the rib edge sipes.

Claims (39)

1. A pneumatic tire comprising:

a plurality of circumferential main grooves extending in a tire circumferential direction;

a rib including at least one end in a tire lateral direction defined by the circumferential main grooves;

a plurality of circumferential sipes extending in the tire circumferential direction, formed in the rib at intervals in the tire circumferential direction;

a plurality of rib edge sipes formed in the rib aligning in the tire circumferential direction, each of the rib edge sipes including a terminating end portion terminating in the rib, and an opening end portion opening to one of the circumferential main grooves;

a plurality of first narrow shallow grooves extending in the tire circumferential direction, each of the first narrow shallow grooves having a groove depth shallower than depths of the circumferential sipes and the rib edge sipes, and including ends each connected to one of the circumferential sipes adjacent to each other in the tire circumferential direction; and

a plurality of second narrow shallow grooves each formed at a groove depth shallower than the depths of the circumferential sipes and the rib edge sipes, each of the second narrow shallow grooves including an inner connection portion that is an end portion connected to one of the first narrow shallow grooves, and including an outer connection portion that is an end portion connected to one of the rib edge sipes,

the first narrow shallow grooves and the second narrow shallow grooves having widths greater than widths of the circumferential sipes and the rib edge sipes.

2. The pneumatic tire according to claim 1 , wherein the first narrow shallow grooves have a maximum groove depth D N1 in a range 0.5 mm≤D N1 ≤4.0 mm.

3. The pneumatic tire according to claim 1 , wherein the second narrow shallow grooves have a maximum groove depth D N2 in a range 0.5 mm≤D N2 ≤4.0 mm.

4. The pneumatic tire according to claim 1 , wherein the circumferential sipes have a relationship between a maximum depth D SC of the circumferential sipes and a maximum groove depth D of the circumferential main grooves, being in a range 0.50≤(D SC /D)≤0.80.

5. The pneumatic tire according to claim 1 , wherein the rib edge sipes have a relationship between a maximum depth D SE of the rib edge sipes and a maximum groove depth D of the circumferential main grooves, being in a range 0.60≤(D SE /D)≤0.90.

6. The pneumatic tire according to claim 1 , wherein the second narrow shallow grooves are each inclined in the tire lateral direction from a front side in a tire rotation direction toward a rear side in the tire rotation direction, from an inner connection portion side toward an outer connection portion side.

7. The pneumatic tire according to claim 1 , wherein the rib edge sipes are each inclined in the tire lateral direction from a front side in a tire rotation direction toward a rear side in the tire rotation direction, from the terminating end portion side toward an opening end portion side.

8. The pneumatic tire according to claim 1 , wherein the circumferential sipes and the first narrow shallow grooves have a relationship between a length L SC of the circumferential sipes in the tire circumferential direction and a length L N1 of the first narrow shallow grooves in the tire circumferential direction, being in a range 0.45≤(L N1 /L SC )≤0.8.

9. A pneumatic tire comprising:

a plurality of circumferential main grooves extending in a tire circumferential direction;

a rib including at least one end in a tire lateral direction defined by the circumferential main grooves;

a plurality of circumferential sipes extending in the tire circumferential direction, formed in the rib at intervals in the tire circumferential direction;

a plurality of rib edge sipes formed in the rib aligning in the tire circumferential direction, each of the rib edge sipes including a terminating end portion terminating in the rib, and an opening end portion opening to one of the circumferential main grooves;

a plurality of first narrow shallow grooves extending in the tire circumferential direction, each of the first narrow shallow grooves having a groove depth shallower than depths of the circumferential sipes and the rib edge sipes, and including ends each connected to one of the circumferential sipes adjacent to each other in the tire circumferential direction; and

a plurality of second narrow shallow grooves each formed at a groove depth shallower than the depths of the circumferential sipes and the rib edge sipes, each including an inner connection portion that is an end portion connected to one of the first narrow shallow grooves or one of the circumferential sipes, and including an outer connection portion that is an end portion connected to one of the rib edge sipes, the plurality of second narrow shallow grooves being disposed on respective sides across each of the first narrow shallow grooves or each of the circumferential sipes, in the tire lateral direction,

the plurality of second narrow shallow grooves disposed on respective sides across each of the first narrow shallow grooves or the circumferential sipes in the tire lateral direction including the inner connection portions displaced from each other in the tire circumferential direction, and

the first narrow shallow grooves and the second narrow shallow grooves having widths greater than widths of the circumferential sipes and the rib edge sipes.

10. The pneumatic tire according to claim 9 , wherein the plurality of second narrow shallow grooves have a relationship between an offset amount L N2 between the inner connection portions and a distance L SE in the tire circumferential direction between the opening end portions of the rib edge sipes adjacent to each other in the tire circumferential direction, being in a range 0.5≤(L N2 /L SE )≤2.0.

11. The pneumatic tire according to claim 9 , wherein the plurality of second narrow shallow grooves have a relationship between an offset amount L N2 between the inner connection portions and a length L SC of the circumferential sipes in the tire circumferential direction, being in a range 0.1≤(L N2 /L SC )≤0.6.

12. The pneumatic tire according to claim 9 , wherein

the rib is formed with a plurality of block portions each including:

one end in the tire lateral direction defined by the one of the circumferential sipes and one of the first narrow shallow grooves;

an other end in the tire lateral direction defined by one of the circumferential main grooves; and

both sides in the tire circumferential direction defined by one of the rib edge sipes and one of the second narrow shallow grooves, respectively, and

the plurality of the second narrow shallow grooves have a relationship between an offset amount L N2 between the inner connection portions and a length L B of the block portions in the tire circumferential direction, being in a range 0.1≤(L N2 /L B )≤0.4.

13. The pneumatic tire according to claim 9 , wherein the first narrow shallow grooves have a maximum groove depth D N1 in a range 0.5 mm≤D N1 ≤4.0 mm.

14. The pneumatic tire according to claim 9 , wherein the second narrow shallow grooves have a maximum groove depth D N2 in a range 0.5 mm≤D N2 ≤4.0 mm.

15. The pneumatic tire according to claim 9 , wherein the circumferential sipes have a relationship between a maximum depth D SC of the circumferential sipes and a maximum groove depth D of the circumferential main grooves, being in a range 0.50≤(D SC /D)≤0.80.

16. The pneumatic tire according to claim 9 , wherein the rib edge sipes have a relationship between a maximum depth D SE of the rib edge sipes and a maximum groove depth D of the circumferential main grooves, being in a range 0.60≤(D SE /D)≤0.90.

17. The pneumatic tire according to claim 9 , wherein the second narrow shallow grooves are each inclined in the tire lateral direction from a front side in a tire rotation direction toward a rear side in the tire rotation direction, from an inner connection portion side toward an outer connection portion side.

18. The pneumatic tire according to claim 9 , wherein the rib edge sipes are each inclined in the tire lateral direction from a front side in a tire rotation direction toward a rear side in the tire rotation direction, from the terminating end portion side toward an opening end portion side.

19. The pneumatic tire according to claim 9 , wherein the circumferential sipes and the first narrow shallow grooves have a relationship between a length L SC of the circumferential sipes in the tire circumferential direction and a length L N1 of the first narrow shallow grooves in the tire circumferential direction, being in a range 0.45≤(L N1 /L SC )≤0.8.

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 Dec 5, 2019
From: HAMANAKA, HIDEKI
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 051196/0813 →