Fuel efficient pneumatic tire
To provide a pneumatic tire with improved performance and balance in terms of fuel efficiency, steering stability performance and wear life. The total width SW, outside diameter OD, tread groove depth Ga, center groove depth Gc and shoulder groove depth Gs satisfy the relationships SW/OD≤0.3, Ga≤0.02×SW+2.5 and Gc>Gs.
1. A pneumatic tire comprising grooves provided on a tread portion:
total width SW and outside diameter OD satisfy a relationship
SW/OD≤ 0.3; and
maximum groove depth of a groove provided in a center region AC having a width 50% of ground contact width W with a tire equator line as its center being center groove depth Gc; maximum groove depth of a groove provided in a shoulder region AS outside from the center region AC in the direction of tire width being shoulder groove depth Gs; and a mean value of the center groove depth Gc and the shoulder groove depth Gs denoting tread groove depth Ga;
the tread groove depth Ga and the total width SW, represented in millimeter units, satisfying a relationship
Ga≤ 0.02× SW+ 2.5 mm;
the center groove depth Gc and the shoulder groove depth Gs satisfying a relationship
Gc>Gs ; and
the outside diameter OD, inside diameter ID, the total width SW, the center groove depth Gc and the shoulder groove depth Gs satisfying a relationship
0.19×( OD−ID )/2 SW+ 1.0≤ Gc/Gs< 0.19×( OD−ID )/2 SW+ 1.2;
wherein the groove having the center groove depth Gc is a circumferential main groove, wherein the groove having the shoulder groove depth Gs is a circumferential thin groove which has a groove width less than that of the circumferential main groove, and wherein a plurality of lateral grooves are formed in the shoulder region AS and all lateral grooves formed in the shoulder region AS terminate in the shoulder region AS without communicating with the circumferential thin groove.
2. The pneumatic tire, according to claim 1 , wherein
a shoulder groove surface area ratio SR and the shoulder groove depth Gs satisfy a relationship
−1.2× Gs+ 23.0≤ SR≤− 1.2× Gs+ 38.0.
3. The pneumatic tire according to claim 1 , wherein
a center groove surface area ratio CR and the center groove depth Gc satisfy a relationship
1.4× Gc+ 11.4≤ CR≤ 1.4× Gc+ 26.4.
4. The pneumatic tire according to claim 2 , wherein
a center groove surface area ratio CR and the center groove depth Gc satisfy a relationship
1.4× Gc+ 11.4≤ CR≤ 1.4× Gc+ 26.4.
5. The pneumatic tire according to claim 1 , wherein 14.9%≤CR≤21%.