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    • 11. 发明授权
    • Tire testing device
    • 轮胎测试装置
    • US09046444B2
    • 2015-06-02
    • US13885349
    • 2011-12-13
    • Takehiko WakazonoTetsuya YoshikawaGlen ThompsonYasuhiko FujiedaShogo Sarumaru
    • Takehiko WakazonoTetsuya YoshikawaGlen ThompsonYasuhiko FujiedaShogo Sarumaru
    • E01C23/00G01M17/02B60C23/00B60C23/02
    • G01M17/021
    • To effectively suppress a shift of a rotating axis of an upper chuck with respect to a rotating axis of a lower chuck due to a separating force. A tire testing device (1) includes: vertical frames (30a, 30b) which are supported by a lower frame (20); a beam (40) which bridges between the vertical frames (30a, 30b) and is movable in the vertical direction; an upper chuck (45) which is attached to the center of the beam (40), the center corresponding to the center of the beam in the longitudinal direction; and a lower chuck (25) which is attached to the lower frame. When viewed from the vertical direction, a rotating axis of an upper rotating member (47) is positioned at the center of a straight line formed by connecting supporting points where each of the vertical frames (30a, 30b) support the beam (40).
    • 为了有效地抑制由于分离力,上卡盘的旋转轴线相对于下卡盘的旋转轴线的偏移。 轮胎测试装置(1)包括:由下框架(20)支撑的垂直框架(30a,30b); 在所述垂直框架(30a,30b)之间桥接并且能够在垂直方向上移动的梁(40); 附接到梁(40)的中心的上卡盘(45),中心对应于梁的纵向方向的中心; 以及附接到下框架的下卡盘(25)。 当从垂直方向观察时,上部​​旋转构件(47)的旋转轴线位于通过连接支撑点形成的直线的中心,其中每个垂直框架(30a,30b)支撑梁(40)。
    • 12. 发明申请
    • METHOD AND APPARATUS FOR MEASURING TIRE PERFORMANCE
    • 测量轮胎性能的方法和装置
    • US20120048006A1
    • 2012-03-01
    • US13178979
    • 2011-07-08
    • Noritaka KoguchiShogo Sarumaru
    • Noritaka KoguchiShogo Sarumaru
    • G01M17/02
    • G01M17/02G01L17/005
    • At least one of ground contact pressure, shear stress and amount of skidding is measured at a measurement point on a tread surface of a tire. A sensor is arranged on a road surface and the measurement point is made to contact the sensor while the tire rotates. An initial position of the tire is set, where the measurement point is at a previously-set reference position and the tire is at a running start position on the road surface. The tire is made to run from the initial position to obtain a rotation angle difference θ between a tire rotation angle until the rotation axis of the tire passes over the arrangement position of the sensor and a tire rotation angle until the measurement point contacts the road surface. The tire is set at the initial position and rotated by θ without changing the running start position of the tire.
    • 在轮胎的胎面表面上的测量点处测量至少一个接地压力,剪切应力和打滑量。 传感器布置在路面上,并且在轮胎旋转时使测量点与传感器接触。 设定轮胎的初始位置,其中测量点处于预先设定的基准位置,并且轮胎处于路面上的行驶开始位置。 使轮胎从初始位置运行以获得旋转角度差; 在轮胎旋转角度直到轮胎的旋转轴线经过传感器的布置位置之前的轮胎旋转角度和直到测量点接触路面的轮胎旋转角度。 轮胎设置在初始位置并旋转& thetas; 而不改变轮胎的行驶起始位置。
    • 13. 发明申请
    • HIGH PRESSURE PROCESSING METHOD
    • 高压加工方法
    • US20060032520A1
    • 2006-02-16
    • US11249444
    • 2005-10-14
    • Yoshihiko SakashitaKatsumi WatanabeHisanori OshibaShogo SarumaruYusuke MuraokaKimitsugu SaitoIkuo MizobataRyuji Kitakado
    • Yoshihiko SakashitaKatsumi WatanabeHisanori OshibaShogo SarumaruYusuke MuraokaKimitsugu SaitoIkuo MizobataRyuji Kitakado
    • B08B3/00
    • H01L21/67017B08B7/0021H01L21/67126Y10S134/902
    • A high-pressure processing apparatus includes a processing vessel including a processing chamber formed therein to perform a certain process onto an object in the processing chamber; fluid feeding means which feeds a high-pressure fluid into the processing chamber; fluid discharging means which discharges the high-pressure fluid from the processing chamber; an agitating unit which is arranged in the processing chamber and is operative to flow the high-pressure fluid over the object by relative rotation to the processing vessel; a communicating channel which is formed in the processing vessel to communicate inside and outside of the processing chamber; a rotary driving member which is coupled to the agitating unit via a shaft portion provided in the communicating channel; and a sealing portion which is provided between the shaft portion and the processing vessel to disconnect the processing chamber from the rotary driving member. The fluid discharging means includes a fluid discharging port formed in a certain position of the communicating channel closer to the processing chamber than the sealing portion to discharge the high-pressure fluid.
    • 高压处理装置包括:处理容器,其包括形成在其中的处理室,以对处理室中的物体执行一定的处理; 流体供给装置,其将高压流体供给到处理室中; 从处理室排出高压流体的流体排出装置; 搅拌单元,其布置在处理室中并且可操作以通过相对于处理容器的旋转将高压流体流过物体; 形成在所述处理容器中以在所述处理室内部和外部连通的连通通道; 旋转驱动构件,其经由设置在所述连通通道中的轴部联接到所述搅拌单元; 以及密封部,其设置在所述轴部和所述处理容器之间,以将所述处理室与所述旋转驱动构件断开。 流体排出装置包括形成在与密封部分相比更靠近处理室的连通通道的特定位置中以排出高压流体的流体排放口。
    • 14. 发明授权
    • High-pressure processing apparatus
    • 高压加工设备
    • US06895032B2
    • 2005-05-17
    • US10625529
    • 2003-07-24
    • Katsumi WatanabeTakahiko IshiiShogo SarumaruHideshi Yamane
    • Katsumi WatanabeTakahiko IshiiShogo SarumaruHideshi Yamane
    • H01L21/31B01J3/00B01J3/03B30B11/00H01L21/00H01L21/677F27D7/06
    • H01L21/67751B30B11/001B30B11/002H01L21/67126Y10T83/9387Y10T83/9423
    • A high-pressure processing apparatus for supplying a pressure medium into a high-pressure processing chamber 4, which is formed in a pressure vessel 1 to treat a workpiece at a high pressure, is provided. The pressure vessel 1 includes a first vessel section 2 and a second vessel section 3, which can be separated from each other in the axial direction, wherein the high-pressure processing chamber 4 is formed between the first and second vessel sections 2 and 3. Furthermore, a face seal section 5 for tightly sealing the high-pressure processing chamber 4 is formed in the abutment of the first and second vessel sections 2 and 3. A press apparatus 7 for providing an axial force to the face seal section 5 is disposed and the press apparatus 7 has a space 15 for storing a supplementary apparatus, such as a stirrer or the like at a position corresponding to the axial center of the pressure vessel 1. Such a structural arrangement allows a face seal type high-pressure processing apparatus to be realized, onto which the supplementary apparatus, such as a stirrer or the like, can be mounted.
    • 提供了一种用于将压力介质供应到形成在压力容器1中以高压处理工件的高压处理室4中的高压处理装置。 压力容器1包括第一容器部分2和第二容器部分3,其可以在轴向上彼此分离,其中高压处理室4形成在第一和第二容器部分2和3之间。 此外,在第一和第二容器部分2和3的邻接处形成用于紧密密封高压处理室4的面密封部分5。 设置用于向面部密封部5提供轴向力的按压装置7,压力装置7具有用于在与压力的轴心对应的位置例如搅拌器等存放辅助装置的空间15 船1。 这种结构布置允许实现面密封型高压处理装置,其上可以安装诸如搅拌器等的辅助装置。
    • 15. 发明授权
    • Method and apparatus for measuring tire performance
    • 测量轮胎性能的方法和装置
    • US08397558B2
    • 2013-03-19
    • US13178979
    • 2011-07-08
    • Noritaka KoguchiShogo Sarumaru
    • Noritaka KoguchiShogo Sarumaru
    • G01M17/02
    • G01M17/02G01L17/005
    • At least one of ground contact pressure, shear stress and amount of skidding is measured at a measurement point on a tread surface of a tire. A sensor is arranged on a road surface and the measurement point is made to contact the sensor while the tire rotates. An initial position of the tire is set, where the measurement point is at a previously-set reference position and the tire is at a running start position on the road surface. The tire is made to run from the initial position to obtain a rotation angle difference θ between a tire rotation angle until the rotation axis of the tire passes over the arrangement position of the sensor and a tire rotation angle until the measurement point contacts the road surface. The tire is set at the initial position and rotated by θ without changing the running start position of the tire.
    • 在轮胎的胎面表面上的测量点处测量至少一个接地压力,剪切应力和打滑量。 传感器布置在路面上,并且在轮胎旋转时使测量点与传感器接触。 设定轮胎的初始位置,其中测量点处于预先设定的基准位置,并且轮胎处于路面上的行驶开始位置。 使轮胎从初始位置运行以获得旋转角度差; 在轮胎旋转角度直到轮胎的旋转轴线经过传感器的布置位置之前的轮胎旋转角度和直到测量点接触路面的轮胎旋转角度。 轮胎设置在初始位置并旋转& thetas; 而不改变轮胎的行驶起始位置。