Pneumatic tire
US-9216618-B2 · Dec 22, 2015 · US
US12496855B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12496855-B2 |
| Application number | US-202318237592-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 24, 2023 |
| Priority date | Nov 8, 2022 |
| Publication date | Dec 16, 2025 |
| Grant date | Dec 16, 2025 |
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Occurrence of uneven wear in a tire having a plurality of blocks is suppressed. A pneumatic tire according to the present invention includes, on a tread, a first intermediate land area formed on an inner side in a tire axial direction of a first shoulder main groove and a second intermediate land area formed on an inner side in the tire axial direction of a second shoulder main groove. Each of a plurality of first intermediate blocks provided in the first intermediate land area has a smaller area of a ground contact surface than each of a plurality of second intermediate blocks provided in the second intermediate land area. A step is formed on at least part of a circumferential edge of the first intermediate block. The step is not formed on a circumferential edge of the second intermediate block.
Opening claim text (preview).
What is claimed is: 1 . A pneumatic tire comprising: on a tread, a first shoulder main groove and a second shoulder main groove extending in a tire circumferential direction; a first intermediate land area formed on an inner side in a tire axial direction of the first shoulder main groove; a second intermediate land area formed on the inner side in the tire axial direction of the second shoulder main groove; a first shoulder land area formed on an outer side in the tire axial direction of the first shoulder main groove; a second shoulder land area formed on an outer side in the tire axial direction of the second shoulder main groove; a first intermediate main groove and a second intermediate main groove provided between the first shoulder main groove and the second shoulder main groove and extending in the tire circumferential direction; and a center land area formed between the first intermediate main groove and the second intermediate main groove, wherein the first intermediate land area has a plurality of first intermediate blocks provided to be aligned in the tire circumferential direction, the second intermediate land area has a plurality of second intermediate blocks provided to be aligned in the tire circumferential direction, each of the first intermediate blocks has a smaller area of a ground contact surface than each of the second intermediate blocks, and a step is formed on at least part of a circumferential edge of each of the first intermediate blocks, the step is not formed on a circumferential edge of each of the second intermediate blocks, the first shoulder main groove is placed closer to a vehicle inside than the second intermediate main groove, the first intermediate main groove is placed closer to the vehicle inside than the second intermediate main groove, the first shoulder land area has a plurality of inside shoulder blocks provided to be aligned in the tire circumferential direction, the second shoulder land area has a plurality of outside shoulder blocks provided to be aligned in the tire circumferential direction, the center land area has a plurality of center blocks provided to be aligned in the tire circumferential direction, the first intermediate land area is provided between the first shoulder main groove and the first intermediate main groove, and has a plurality of inside intermediate blocks provided to be aligned in the tire circumferential direction, the second intermediate land area is formed between the second shoulder main groove and the second intermediate main groove, and has a plurality of outside intermediate blocks provided to be aligned in the tire circumferential direction, the first shoulder main groove, the second shoulder main groove, and the first intermediate main groove are straight main grooves extending in parallel to the tire circumferential direction, the second intermediate main groove is a zigzag main groove extending in the tire circumferential direction while bending with an amplitude in the tire axial direction, and steps are formed on at least part of circumferential edges of each of the inside intermediate blocks, each of the inside shoulder blocks, and each of the outside shoulder blocks, and the step is not formed on circumferential edges of each of the outside intermediate blocks and each of the center blocks. 2 . The pneumatic tire according to claim 1 , wherein the step is formed on end edges in the tire circumferential direction of each of the first intermediate blocks, and is not formed on an end edge in the tire axial direction of each of the first intermediate blocks. 3 . The pneumatic tire according to claim 1 , wherein the second intermediate land area has first outside intermediate lateral grooves provided between the outside intermediate blocks, and a plurality of first protrusions protruding from side walls of the outside intermediate blocks facing the second shoulder main groove to the inside of the second shoulder main groove, the second shoulder land area has outside shoulder lateral grooves provided between the outside shoulder blocks, the outside shoulder lateral groove has a shoulder opening that opens to the second shoulder main groove, the first protrusion includes a first protrusion inclined surface connected to a ground contact surface of each of the outside intermediate blocks, the first protrusion inclined surface is inclined so that a protruding height from a groove bottom of the second shoulder main groove becomes smaller as going to a tip end, and at least part of the tip end of the first protrusion overlaps with the shoulder opening in the tire axial direction. 4 . The pneumatic tire according to claim 3 , wherein the outside shoulder lateral groove extends straight, and a center in the tire circumferential direction of the tip end of the first protrusion overlaps with a center in the tire circumferential direction of the shoulder opening in an extended direction of the outside shoulder lateral groove. 5 . The pneumatic tire according to claim 3 , wherein the first protrusion inclined surface forms a trapezoidal shape in which a length in the tire circumferential direction becomes shorter as going to a tip end side, and a length in the tire circumferential direction of the tip end of the first protrusion is shorter than a length in the tire circumferential direction of the shoulder opening. 6 . The pneumatic tire according to claim 3 , wherein the first protrusions include large protrusions and small protrusions in which an area of the first protrusion inclined surface is smaller than the large protrusions, the outside shoulder lateral grooves include large shoulder lateral grooves and small shoulder lateral grooves having a narrower groove width than the large shoulder lateral grooves, and the large protrusion overlaps with the large shoulder lateral groove in the tire axial direction, and the small protrusion overlaps with the small shoulder lateral groove in the tire axial direction. 7 . The pneumatic tire according to claim 3 , wherein each of the outside shoulder blocks has a first side wall and a second side wall facing the outside shoulder lateral groove, a first shoulder inclined surface provided on the first side wall and is inclined so that a groove width of the outside shoulder lateral groove is widened as coming close to the second shoulder main groove, and a second shoulder inclined surface provided on the second side wall and is inclined so that the groove width of the outside shoulder lateral groove is widened as coming close to the second shoulder main groove, the second intermediate land area has second outer intermediate lateral grooves provided alternately with the first outside intermediate lateral grooves in the tire circumferential direction, in which one end thereof opens to the second shoulder main groove and the other end terminates respectively in each of the outside intermediate blocks, the first outside intermediate lateral groove and the second outside intermediate lateral groove are inclined in opposite directions to each other with respect to the tire axial direction, and the first shoulder inclined surface is provided in parallel to an extended direction of the first outside intermediate lateral groove, and the second shoulder inclined surface is provided in parallel to an extended direction of the second outside intermediate lateral groove. 8 . The pneumatic tire according to claim 3 , wherein each of the outside shoulder blocks has a first side wall facing the outside shoulder lateral groove on a kicking side of each of the outside shoulder blocks, a second side wall facing the outside shoulder lateral groove on a stepping side of each of the outside shoulder blocks,
in which the raised area of the pattern consists only of isolated elements, e.g. blocks (B60C11/12, B60C11/13 take precedence) · CPC title
with zigzag shape · CPC title
Lateral grooves, i.e. having an angle of 45 to 90 degees to the equatorial plane · CPC title
Asymmetric patterns · CPC title
Patterns comprising block rows or discontinuous ribs · CPC title
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