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    • 6. 发明授权
    • Pneumatic tire
    • 气动轮胎
    • US09139047B2
    • 2015-09-22
    • US13338790
    • 2011-12-28
    • Masaki Terashima
    • Masaki Terashima
    • B60C11/04B60C11/00B60C11/03
    • B60C11/0083B60C11/0306B60C11/042B60C2011/0365B60C2011/0369B60C2011/0372B60C2011/0374B60C2011/0381
    • A tire contour shape is formed by a single arc in a condition in which tire flattening rate is more than 55% and less than 70% and internal pressure is 5%. Shoulder lateral grooves extend at an angle α of 80 to 90° from the axially outer side of the tread ground-contact edge to the axially inner side of the tire, and the tire axially inner ends terminate within the shoulder land portion. A tire axial distance Ds between the tire axially inner end and the shoulder circumferential main groove is in the range of 3.5 to 5.5 mm, the shoulder lateral groove has the deepest part where the groove depth is largest, and the groove depth of the deepest part is 70 to 90% of the groove depth of the shoulder circumferential main grooves.
    • 在轮胎平坦化率大于55%且小于70%,内部压力为5%的条件下,通过单个电弧形成轮胎轮廓形状。 肩部横向沟从胎面接地边缘的轴向外侧到轮胎的轴向内侧以80°至90°的角度延伸,并且轮胎轴向内端终止于肩部陆地部分内。 轮胎轴向内端和胎肩周向主槽之间的轮胎轴向距离Ds在3.5〜5.5mm的范围内,肩部侧向槽具有槽深度最大的最深部,最深部的槽深度 是胎肩周向主槽的槽深度的70〜90%。
    • 9. 发明申请
    • Pneumatic tire
    • 气动轮胎
    • US20080223495A1
    • 2008-09-18
    • US12073428
    • 2008-03-05
    • Akio IkedaNaoki KageyamaMasaki TerashimaNoriko Kishimoto
    • Akio IkedaNaoki KageyamaMasaki TerashimaNoriko Kishimoto
    • B60C11/01
    • B60C11/01B60C11/12B60C2011/013Y10S152/03
    • A pneumatic tire capable of preventing wandering without impairing wear resistance, including tread portion 2 having circumferential shoulder grooves 6c extending at locations near ground contact edges E and lateral shoulder grooves 7d extending between circumferential groove 6c and ground contact edge E, and having square shoulders such that tread surface 2a and buttress face 14 extending radially inwardly and axially outwardly from ground contact edge E intersects to form an edge or corner, wherein each shoulder block B4 is provided with circumferential sipe 11 in a region apart axially inwardly from ground contact edge E by a distance of 2 mm or more and a distance of 10 mm or less, the buttress face 14 is provided with recess 15 extending circumferentially in at least a part of projection region Z obtained by projecting circumferential sipe 11 onto buttress face 14, and radially innermost end 15B of recess 15 is located at a radial position corresponding to a region ranging from 50 to 100% of the depth of circumferential sipe 11.
    • 一种能够防止在不损害耐磨性的情况下流动的充气轮胎,包括胎面部2,胎面部2具有在接地接触边缘E附近的位置和在周向槽6c和接地接触边缘E之间延伸的横向胎肩槽7d延伸的周向胎肩槽6c, 平面肩部,使得从接地边缘E径向向内和向外向外延伸的胎面表面2a和支撑面14相交以形成边缘或角部,其中每个肩部块B 4在沿轴向向内分开的区域中设置有周向刀槽花纹11 接地边缘E距离为2mm以上且距离为10mm以下,支撑面14设置有凹部15,该凹部15在将周向刀槽花纹11突出到支撑面上而形成的突起区域Z的至少一部分中周向延伸 14,并且凹部15的径向最内端部15B位于对应于范围f的区域的径向位置处 圆周刀槽花纹的深度的50至100%。
    • 10. 发明授权
    • Method of use of a control channel in a cellular communications system
    • 在蜂窝通信系统中使用控制信道的方法
    • US5907806A
    • 1999-05-25
    • US840901
    • 1997-04-17
    • Jun YamadaMasaki TerashimaJun Nagamatsu
    • Jun YamadaMasaki TerashimaJun Nagamatsu
    • H04B7/26H04W48/08H04W48/16H04Q7/32
    • H04W48/16H04W48/08
    • A microcellular communication system which broadcasts its local channel block, comprising the control channels allotted from a total channel block to the microcellular system, on all control channels being used by the said system. A mobile unit seeking access to the microcellular system initially searches the total channel block in an effort to receive the local channel block information broadcast by the microcellular system. The mobile unit compares received local channel block information with stored total channel block information and replaces its memory content with the newly received information. Periodic searching of stored channel block information is conducted to verify that the mobile unit has the relevant channel block information for the local microcellular system.
    • 在由所述系统使用的所有控制信道上广播其本地信道块的微蜂窝通信系统,其包括从总信道块分配给微蜂窝系统的控制信道。 寻求接入微蜂窝系统的移动单元最初搜索总信道块,努力接收由微蜂窝系统广播的本地信道块信息。 移动单元将接收到的本地信道块信息与存储的总信道块信息进行比较,并用新接收到的信息替换其存储器内容。 对存储的信道块信息进行定期搜索以验证移动单元是否具有用于本地微蜂窝系统的相关信道块信息。