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    • 1. 发明申请
    • PNEUMATIC TIRE
    • 气动轮胎
    • US20090194213A1
    • 2009-08-06
    • US12158841
    • 2007-10-05
    • Takayuki Suzuki
    • Takayuki Suzuki
    • B60C11/13
    • B60C11/042B60C11/047B60C2011/1361Y10S152/01
    • A pneumatic tire includes on a tread a plurality of circumferential main grooves extending in the tire circumferential direction, and a plurality of land portions formed by being partitioned by the circumferential main grooves. A protrusion is formed on a groove bottom of at least one of the circumferential main grooves. The protrusion continuously extends in a groove-length direction of the circumferential main groove, and a height h1 of the protrusion varies in a wavelike form along the groove-length direction. Moreover, junctions each of which couples the protrusion onto at least one of groove walls of the circumferential main groove are formed on the groove bottom of the circumferential main groove.
    • 一种充气轮胎在胎面上具有沿轮胎周向延伸的多个周向主槽,以及由周向主槽隔开形成的多个胎面部。 在周向主槽的至少一个的槽底部形成有突起。 突起在周向主槽的槽长方向上连续地延伸,突起的高度h1沿槽长方向以波浪形状变化。 此外,在周向主槽的槽底部形成有将突起连接到周向主槽的槽壁中的至少一个的接合部。
    • 2. 发明申请
    • PNEUMATIC TIRE
    • 气动轮胎
    • US20080121326A1
    • 2008-05-29
    • US11874334
    • 2007-10-18
    • Masaaki Ohara
    • Masaaki Ohara
    • B60C11/13
    • B60C11/042B60C11/045B60C11/047B60C11/13B60C2011/1254Y10S152/01Y10S152/03Y10S152/901
    • A pneumatic tire of the invention includes: a stepped-shaped raised area provided in the main groove positioned at a center area of the tire so as to be continued circumferentially of the tire, connected to either the main groove walls, and raised from the groove bottom; and a ridge lower than a tread surface of the tire in each of the main grooves on both outsides of the main groove at the center area of the tire so as to be raised from the center of the groove bottom continuously along the length thereof without being joined with the groove walls, and the angle of inclination of the main groove walls with respect to the normal line of the tangential line on the tread surface of the main groove portion is parallel to each other or is 5° or smaller.
    • 本发明的充气轮胎包括:设置在位于轮胎中心区域的主槽内的阶梯形凸起区域,以便沿着轮胎的周向继续连接,与主槽壁连接,并从槽 底部; 以及在轮胎的中心区域处的主槽的外侧的每个主槽中的轮胎的胎面表面下方的脊,以便沿着其长度连续地从槽底的中心升高而不是 与槽壁连接,并且主槽壁相对于主槽部分的胎面表面上的切线的法线的倾斜角度彼此平行或为5°或更小。
    • 3. 发明授权
    • Pneumatic tire
    • 气动轮胎
    • US06176284B1
    • 2001-01-23
    • US09206397
    • 1998-12-07
    • Yoshiyuki Takada
    • Yoshiyuki Takada
    • B60C1111
    • B60C11/13B60C11/047Y10S152/01Y10S152/902
    • A pneumatic tire having a block type tread pattern improved in stone trapping, which comprises a tread portion being provided with a mesh of grooves to define a plurality of blocks consisting of shoulder blocks adjacent to the tread edges and central blocks other than the shoulder blocks, each of the central blocks being surrounded by at least one projection standing out from the groove bottom leaving spaces from the groove walls, the projection comprising alternate wide main portions and narrow coupler portions, the height of the wide main portions being 10 to 25% of the groove depth, the height of the narrow coupler portions being 5 to 10% of the groove depth, the length of each of the wide main portions being 3 to 10 mm, the length of each of the narrow coupler portions being 2 to 8 mm, the width of the narrow coupler portions being 0.5 to 2 mm, and the main portions comprises first main portions and second main portions, the first main portions being disposed between junctions of the grooves and being relatively taller than said second main portions.
    • 一种充气轮胎,具有在石材捕获中改进的块状胎面花纹,其包括:胎面部,其设置有用于限定与胎面边缘相邻的肩部块和除肩部块之外的中心块的多个块, 每个中央块被从凹槽底部突出的至少一个突出部包围,从槽壁留下空间,该突起包括交替的宽主体部分和窄耦合部分,宽主要部分的高度为10-25% 槽深度,窄耦合器部分的高度为沟槽深度的5至10%,每个宽主体部分的长度为3至10mm,每个窄耦合部分的长度为2至8mm ,窄耦合器部分的宽度为0.5至2mm,并且主要部分包括第一主要部分和第二主要部分,第一主要部分设置在t 他的凹槽并且比所述第二主要部分相对较高。
    • 4. 发明授权
    • Truck steer tire tread including circumferential grooves
    • 卡车转向轮胎胎面包括周向槽
    • US6142200A
    • 2000-11-07
    • US63571
    • 1998-04-21
    • Georges Gaston FeiderJean-Michel GillardSusan Marie Spaeth
    • Georges Gaston FeiderJean-Michel GillardSusan Marie Spaeth
    • B60C11/03B60C11/12B60C11/13B60C11/24B60C11/04B60C101/00
    • B60C11/042B60C11/0309B60C11/12B60C11/125B60C11/13B60C11/24B60C2011/0348Y10S152/01Y10S152/03Y10S152/901
    • A new pneumatic radial ply truck tire 10 for use on steering axles has a tread 12 with a pair of centerline grooves 14 and a pair of shoulder grooves 16 that divide the tread 12 into a pair of shoulder rows 24, a pair of riding rows 26 and a center row 28. Lateral grooves 20 divide the rows into block elements 22. The centerline grooves 14 and shoulder grooves 16 have top, middle and bottom potions 30, 32, 34 and 36, 38, 40. The top portions 30, 36 have straight sides 42, 48 that are angled at top angles A1, A2 respectively. The middle portions 32, 38 also have straight sides 44, 50 that are angled at middle angles A3, A4 respectively. To provide the grooves 14, 16 with a general V-shape, it is preferred that the middle angles A3, A4 be greater than their respective top angles A1, A2 respectively. The bottom portions 34, 40 are U-shaped and have bottom widths X1 and bottom depths D1, D2 respectively. These U-shaped bottom portions 34, 40 are wide enough to permit a tread gauge to be inserted for measuring the non-skid depth yet, are narrow enough to prevent stones of significant size from entering. The lateral grooves 20 that extend across the two riding rows 26 and the center row 28 have top portions 58, 64 and bottom portions 60, 66. The bottom portions 60, 66 have second widths W2, W4 and second depths D4, D6 that extend to at least 50% of the tread non-skid depth D. The center row 28 and the riding rows 26 are formed at a tread arc radius TAR. The shoulder rows 24 have inside edges lowered a first distance D10 with respect to the tread arc radius TAR and outside edges that are raised a second distance D11 with respect to the tread arc radius TAR. This single radius plus mixed shoulder off-set design reduces irregular wear and helps in achieving equal pressure distribution across the surface of the tread 12.
    • 用于转向轴的新型气动径向搭载卡车轮胎10具有胎面12,胎面12具有一对中心线槽14和一对胎肩槽16,该胎肩槽16将胎面12分成一对肩部行24,一对骑行行26 横列20将行分成块元件22.中心线槽14和肩部槽16具有顶部,中间和底部部分30,32,34,36,38,40。顶部30,36 具有分别以顶角A1,A2成角度的直边42,48。 中间部分32,38也具有分别以中间角度A3,A4成角度的直边44,50。 为了提供具有一般V形的槽14,16,优选的是,中间角A3,A4分别大于它们各自的顶角A1,A2。 底部34,40是U形的,并且分别具有底部宽度X1和底部深度D1,D2。 这些U形底部34,40足够宽以允许插入踏板以测量非滑动深度,并且足够窄以防止具有相当大尺寸的石块进入。 延伸穿过两个行列26和中心行28的横向凹槽20具有顶部58,64和底部60,66。底部60,66具有第二宽度W2,W4和第二深度D4,D6,其延伸 到胎面非滑动深度D的至少50%。中心排28和搭乘排26形成为胎面弧半径TAR。 肩部行24的内边缘相对于胎面弧半径TAR降低第一距离D10,相对于胎面弧半径TAR将第二距离D11升高的外边缘降低。 该单个半径加上混合肩部偏离设计减少了不规则磨损,并且有助于在胎面12的表面上实现相等的压力分布。