IP Library › Granted Patent US 8,215,350
Granted Patent B2
US 8,215,350 · App. 12/639,072 · Granted Jul 10, 2012

Truck racing tire

Assignee: The Goodyear Tire & Rubber Company
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Quick Facts
Patent No.
US 8,215,350
App. No.
12/639,072
Granted
Jul 10, 2012
Kind
B2
Abstract

The invention is directed to a pneumatic radial ply truck tire having a tread with a tread depth D, at least two circumferential grooves dividing the tread into at least a first shoulder circumferential rib, an intermediary circumferential rib, and a second shoulder circumferential rib, the tire being characterized by the tread having a base region disposed at depth D and a cap region over the base region, the base region and the cap region adjoining along a boundary, the cap region comprising a cap rubber composition having properties measured at 23° C. of: elongation of 400 to 500%, true tensile of 77 to 83 MPa, 300% modulus of 9 to 11 MPa, tensile strength of 14 to 15 MPa, shore A hardness of 63 to 68, rebound of 20 to 25%; and the base region comprising a base rubber composition having properties measured at 23° C. of: elongation of 470 to 520%, true tensile of 135 to 150 MPa, 300% modulus of 13 to 15.5 MPa, tensile strength of 22 to 25 MPa, shore A hardness of 63 to 67, rebound 50 to 55%.

Claims (16)

1. A pneumatic radial ply truck tire having a tread with a tread depth D, at least two circumferential grooves dividing the tread into at least a first shoulder circumferential rib, an intermediary circumferential rib, and a second shoulder circumferential rib, the tire being characterized by: the tread having a first wear indicator disposed within at least one circumferential groove and a second wear indicator disposed within a rib for confirmation of tread wear; a plurality of elongate discrete notches formed to extend into the tread first shoulder rib, second shoulder rib, and intermediary rib in respective circumferential patterns; at least one notch in each circumferential pattern extends to a depth corresponding with the depth of the first wear indicator within the at least one circumferential groove;

the tread having a base region disposed at depth D and a cap region over the base region, the base region and the cap region adjoining along a boundary, the cap region comprising a cap rubber composition having properties measured at 23° C. of: elongation of 400 to 500%, true tensile of 77 to 83 MPa, 300% modulus of 9 to 11 MPa, tensile strength of 14 to 15 MPa, shore A hardness of 63 to 68, rebound of 20 to 25%; and the base region comprising a base rubber composition having properties measured at 23° C. of: elongation of 470 to 520%, true tensile of 135 to 150 MPa, 300% modulus of 13 to 15.5 MPa, tensile strength of 22 to 25 MPa, shore A hardness of 63 to 67, rebound 50 to 55%.

2. A tire according to claim 1 , wherein the second wear indicator comprising a tread base region disposed at depth D constructed from relatively harder material and a cap region over the base region constructed from relatively softer material, the base region and the cap region adjoining along a boundary.

3. A tire according to claim 2 wherein the first wear indicator within the at least one groove is at the depth of the boundary between the base region and the cap region.

4. An asymmetric pneumatic radial ply truck tire having a tread with a tread depth D, at least two circumferential grooves dividing the tread into at least a first shoulder circumferential rib, an intermediary circumferential rib, and a second shoulder circumferential rib, the tire being characterized by

the first shoulder rib having width wider than the second shoulder rib and a substantially rounded upper surface across an outer edge region;

the second shoulder rib having a substantially flat upper surface across an outer edge region; and

the tread having a first wear indicator disposed within at least one circumferential groove and a second wear indicator disposed within a rib for confirmation of tread wear;

wherein the second wear indicator comprising at least one notch formed to extend into at least one rib to a depth substantially corresponding to the depth of the first wear indicator; the tread having a base region disposed at depth D and a cap region over the base region, the base region and the cap region adjoining along a boundary, the cap region comprising a cap rubber composition having properties measured at 23° C. of: elongation of 400 to 500%, true tensile of 77 to 83 MPa, 300% modulus of 9 to 11 MPa, tensile strength of 14 to 15 MPa, shore A hardness of 63 to 68, rebound of 20 to 25%; and the base region comprising a base rubber composition having properties measured at 23° C. of: elongation of 470 to 520%, true tensile of 135 to 150 MPa, 300% modulus of 13 to 15.5 MPa, tensile strength of 22 to 25 MPa, shore A hardness of 63 to 67, rebound 50 to 55%.

5. A tire according to claim 4 , wherein further characterized by the second wear indicator comprising a tread base region disposed at depth D constructed from relatively harder material and a cap region over the base region constructed from relatively softer material, the base region and the cap region adjoining along a boundary.

6. A tire according to claim 5 , wherein the first wear indicator within the at least one groove is at the depth of the boundary between the base region and the cap region.

7. A tire according to claim 4 , wherein further characterized by at least one belt reinforcement structure located radially from the tread, the belt reinforcement structure comprising three belts.

8. A tire according to claim 4 , wherein further characterized by a plurality of elongate discrete notches formed to extend into the tread first shoulder rib, second shoulder rib, and intermediary rib in respective circumferential patterns.

9. A tire according to claim 8 , wherein further characterized by at least one notch in each circumferential pattern extends to a depth corresponding with the depth of the first wear indicator within the at least one circumferential groove.

10. An asymmetric pneumatic radial ply truck tire having a tread with a tread depth D, at least two circumferential grooves dividing the tread into at least a first shoulder circumferential rib, an intermediary circumferential rib, and a second shoulder circumferential rib, the tire being characterized by: the first shoulder rib having a width wider than the second shoulder rib and a substantially rounded upper surface across an outer edge region; the second shoulder rib having a substantially flat upper surface across an outer edge region; and the tread having a base region disposed at depth D constructed from relatively harder material and a cap region over the base region constructed from relatively softer material, the base region and the cap region adjoining along a boundary; wherein at least one groove has a wear indicator formed therein at a preselected depth; wherein the boundary between the base region and the cap region is substantially at the preselected wear indicator depth within the one groove; and at least one tread region has at least one notch formed therein extending to the preselected wear indicator depth;

the tread having a base region disposed at depth D and a cap region over the base region, the base region and the cap region adjoining along a boundary, the cap region comprising a cap rubber composition having properties measured at 23° C. of: elongation of 400 to 500%, true tensile of 77 to 83 MPa, 300% modulus of 9 to 11 MPa, tensile strength of 14 to 15 MPa, shore A hardness of 63 to 68, rebound of 20 to 25%; and the base region comprising a base rubber composition having properties measured at 23° C. of: elongation of 470 to 520%, true tensile of 135 to 150 MPa, 300% modulus of 13 to 15.5 MPa, tensile strength of 22 to 25 MPa, shore A hardness of 63 to 67, rebound 50 to 55%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2012
From: RODER, DANIEL; LINSTER, TOM DOMINIQUE; OZEL, FAHRI
To: GOODYEAR TIRE & RUBBER COMPANY, THE
Reel/Frame 028319/0737 →
Continuity (3)
Division 11403629 · Apr 13, 2006
Provisional Application 60671568 · Apr 15, 2005
Related Publication 20100116388A1 · May 13, 2010