Pneumatic tire
A pneumatic tire includes chamfered sipes in a land portion each including a chamfered portion, and non-chamfered sipes in the land portion each not including the chamfered portion. The chamfered sipe includes one end communicating with the main groove that defines the land portion and the other end terminating within the land portion. The chamfered and non-chamfered sipes are alternately disposed in the circumferential direction. Of the non-chamfered sipes on both sides in the circumferential direction of the chamfered sipe, a relationship between a distance a and a distance b is in the range 1.5≤(b/a)≤12, where the distance a is between the chamfered sipe and a near sipe corresponding to the non-chamfered sipe located on a side closest to the chamfered sipe, and the distance b is between the chamfered sipe and the non-chamfered sipe located further from the chamfered sipe in the circumferential direction.
1 . A pneumatic tire, comprising:
a plurality of main grooves extending in a tire circumferential direction;
a land portion comprising end portions in a tire width direction that are defined by the main grooves;
a plurality of chamfered sipes formed in the land portion, each of the chamfered sipes comprising a chamfered portion; and
a plurality of non-chamfered sipes formed in the land portion, each of the non-chamfered sipes not comprising a chamfered portion, wherein
the chamfered sipe comprises one end communicating with one of the main grooves that defines the land portion and an other end terminating within the land portion,
the chamfered sipes and the non-chamfered sipes are alternately disposed in the tire circumferential direction, only a single one of the chamfered sipes being provided in the land portion between circumferentially adjacent non-chamfered sipes,
of the non-chamfered sipes located on both sides in the tire circumferential direction of the chamfered sipe, a relationship between a distance a and a distance b in the tire circumferential direction is in a range 1.5≤(b/a)≤12, where the distance a in the tire circumferential direction is a distance between the chamfered sipe and a near sipe corresponding to the non-chamfered sipe that is located on a side close to the chamfered sipe in the tire circumferential direction, and the distance b in the tire circumferential direction is a distance between the chamfered sipe and the non-chamfered sipe that is located on a side remote from the chamfered sipe in the tire circumferential direction, and
of opposed wall surfaces of the chamfered sipe, only the wall surface located on a side close to the near sipe is provided with the chamfered portion.
2 . The pneumatic tire according to claim 1 , wherein a relationship between a length Lm of the chamfered sipe and a length Lp of the near sipe is in a range 0.2≤(Lm/Lp)≤0.95.
3 . The pneumatic tire according to claim 2 , wherein a relationship between an opening width Wm of the chamfered sipe and an opening width Wp of the near sipe is in a range 1.2≤(Wm/Wp)≤6.0.
4 . The pneumatic tire according to claim 3 , wherein the chamfered sipe has a relationship between an opening width Wm and a groove bottom width Wm 1 being in a range 0.1≤(Wm 1 /Wm)≤0.85.
5 . The pneumatic tire according to claim 4 , wherein
both sides of the land portion in the tire width direction are defined by the main grooves, and
the near sipe communicates with two of the main grooves that define the land portion.
6 . The pneumatic tire according to claim 5 , wherein a relationship between a groove depth Dm of the chamfered sipe and a groove depth Dp of the near sipe is in a range 1.2≤(Dp/Dm)≤8.0.
7 . The pneumatic tire according to claim 6 , wherein the chamfered sipe has a relationship between a groove depth Dm and a chamfered portion depth Dm 1 being in a range 0.1≤(Dm 1 /Dm)≤0.85.
8 . The pneumatic tire according to claim 7 , wherein
both sides of the land portion in the tire width direction are defined by the main grooves, and
the plurality of chamfered sipes formed in an identical land portion communicate with an identical main groove.
9 . The pneumatic tire according to claim 8 , wherein of the chamfered sipe and the near sipe, the near sipe is disposed on a leading side in a tire rotation direction.
10 . The pneumatic tire according to claim 9 , wherein the land portion in which the chamfered sipes are formed comprises a road contact surface that bulges from a standard contour line of a tread profile toward an outer side in a tire radial direction in a tire meridian cross-sectional view.
11 . The pneumatic tire according to claim 1 , wherein a relationship between an opening width Wm of the chamfered sipe and an opening width Wp of the near sipe is in a range 1.2≤(Wm/Wp)≤6.0.
12 . The pneumatic tire according to claim 1 , wherein the chamfered sipe has a relationship between an opening width Wm and a groove bottom width Wm 1 being in a range 0.1≤(Wm 1 /Wm)≤0.85.
13 . The pneumatic tire according to claim 1 , wherein
both sides of the land portion in the tire width direction are defined by the main grooves, and
the near sipe communicates with two of the main grooves that define the land portion.
14 . The pneumatic tire according to claim 1 , wherein a relationship between a groove depth Dm of the chamfered sipe and a groove depth Dp of the near sipe is in a range 1.2≤(Dp/Dm)≤8.0.
15 . The pneumatic tire according to claim 1 , wherein the chamfered sipe has a relationship between a groove depth Dm and a chamfered portion depth Dm 1 being in a range 0.1≤(Dm 1 /Dm)≤0.85.
16 . The pneumatic tire according to claim 1 , wherein
both sides of the land portion in the tire width direction are defined by the main grooves, and
the plurality of chamfered sipes formed in an identical land portion communicate with an identical main groove.
17 . The pneumatic tire according to claim 1 , wherein of the chamfered sipe and the near sipe, the near sipe is disposed on a leading side in a tire rotation direction.
18 . The pneumatic tire according to claim 1 , wherein the land portion in which the chamfered sipes are formed comprises a road contact surface that bulges from a standard contour line of a tread profile toward an outer side in a tire radial direction in a tire meridian cross-sectional view.