发明名称 Pneumatic tire
摘要 A pneumatic tire comprises an asymmetric tread pattern with a designated install direction to a vehicle having an outboard tread edges, the tread pattern having an outboard tread portion between the outboard tread edge and a tire equator and provided with an outer main groove, the outer main groove having a cross section comprising a bottom with a depth of 5.5 to 6.5 mm, and axially inner and outer groove walls each extending from the bottom to a tread contact surface, respectively, at least one of groove walls having a stepwise shape comprising a radially inner portion extending from the bottom with a height of 2.0 to 4.0 mm, an axially extending stepped portion extending from the radially inner portion with a length of 0.75 to 1.25 mm, and a radially outer portion between the stepped portion and the tread contact surface.
申请公布号 US9302548(B2) 申请公布日期 2016.04.05
申请号 US201313962143 申请日期 2013.08.08
申请人 SUMITOMO RUBBER INDUSTRIES, LTD. 发明人 Tanabe Maiko;Morozumi Junichiro
分类号 B60C11/04;B60C11/117;B60C11/13;B60C11/03 主分类号 B60C11/04
代理机构 Birch, Stewart, Kolasch & Birch, LLP 代理人 Birch, Stewart, Kolasch & Birch, LLP
主权项 1. A pneumatic tire comprising a tread portion comprising an asymmetric tread pattern with a designated install direction to a vehicle, wherein the tread portion comprises an outboard tread portion that is positioned outward with respect to the tire equator when the tire is installed to a vehicle and an inboard tread portion that is positioned inward with respect to the tire equator when the tire is installed to the vehicle, said outboard tread portion is provided with at least one circumferentially extending outer main groove to form an outboard shoulder portion between the outer main groove and an outboard tread edge, said outer main groove, in a cross section perpendicular to the groove centerline, comprises a bottom having a depth in a range of from 5.5 to 6.5 mm, an axially inner groove wall which extends from the side of the tire equator of the bottom to a tread contact surface, and an axially outer groove wall which extends from the side of a tread contacting edge of the bottom to the tread contact surface, at least one of said groove walls has a stepwise shape that comprises a radially inner portion extending radially outward from the bottom with a height γ in a range of from 2.0 to 4.0 mm, a stepped portion extending from a radially outer end of said radially inner portion in an axial direction of the tire with a length β in a range of from 0.75 to 1.25 mm, and a radially outer portion extending from an axially outer end of the stepped portion to the tread contact surface, said inboard tread portion is provided with one circumferentially extending inner main groove so as to form an inboard shoulder portion that is between an inboard tread edge and the inner main groove, said inboard shoulder portion is provided with a heat radiation groove, said heat radiation groove has a depth in a range of from 3.0 to 5.0 mm and comprises a radially inner part having a radial height in a range of from 60% to 80% in respect to a groove depth from the bottom in the cross section perpendicular to the groove centerline and a radially outer part connecting to the radially inner part and extending toward the tread contact surface, said radially inner part has a groove width in a range of 1.0 to 3.0 mm, said radially outer part comprises a pair of slant groove walls so that a groove width thereof is increasing, the inboard shoulder portion is further provided with a plurality of first inner lug grooves each of which extends from the inboard tread edge toward the tire equator beyond the heat radiation groove without reaching the inner main groove. the outboard shoulder portion is provided with a plurality of outer shoulder lug grooves each of which extends from the outboard tread edge toward the tire equator without reaching the outer main groove, wherein axial lengths of the outer shoulder lug grooves are in a range of from 65% to 95% of an axial length of the outer shoulder portion, and circumferential pitches of the outer shoulder lug grooves are smaller than circumferential pitches of the first inner lug grooves.
地址 Kobe-Shi JP