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    • 2. 发明公开
    • UNIFORMITY TESTING SYSTEM AND METHODOLOGY FOR UTILIZING THE SAME
    • 均匀性测试系统和利用它的方法
    • EP2997326A1
    • 2016-03-23
    • EP14798416.5
    • 2014-05-06
    • Android Industries LLC
    • LAWSON, Lawrence, J.STRAITIFF, Donald, G.CLARK, Barry, A.NIAZY, Ramsey, Richard
    • G01B11/24G01B11/30G01N21/88G01N21/952G01M17/013G01M17/02
    • G01N21/8851G01N21/84G01N21/952G01N2021/8887
    • A system (10) for testing an implement (W, T, TW
      NI , TW
      I ) is disclosed. The system (10) includes: a computing resource (12), an implement rotating device (14), a light emitting device (16) and a light receiving device (18). The implement rotating device (14) rotatably-supports the implement (W, T, TW
      NI , TW
      I ). The implement rotating device (14) is communicatively-coupled to the computing resource (12). The light emitting device (16) is communicatively-coupled to the computing resource (12). The light receiving device (18) is communicatively-coupled to the computing resource (12). The implement rotating device (14) and the implement (W, T, TW
      NI , TW
      I ) are arranged between the light emitting device (16) and the light receiving device (18). The light emitting device (16) and the light receiving device (18) are substantially linearly-aligned with the implement rotating device (14) and the implement (W, T, TW
      NI , TW
      I ) such that upon activating the light emitting device (16), light (L) that is emitted by the light emitting device (16) is directed toward both of the implement (W, T, TW
      Ni , TW
      i ) and the light receiving device (18) whereby the light receiving device (18) captures an image corresponding to a portion (L
      2 ) of the light (L) emitted by the light emitting device (16) and a shadow (L
      1 ') formed by at least a portion of the implement (W, T, TW
      NI , TW
      I ). The shadow (L
      1 ') corresponds to another portion (L
      1 ) of the light (L) that is not received by the light receiving device (18). The light receiving device (18) communicates the captured image to the computing resource (12) for determining uniformity or a lack of uniformity of the implement (W, T, TW
      NI , TW
      I ). A method (100) for utilizing the system (10) is also disclosed. A computer program product is also disclosed.
    • 公开了一种用于测试器具(W,T,TW NI,TW I)的系统(10)。 该系统(10)包括:计算资源(12),机具旋转装置(14),发光装置(16)和光接收装置(18)。 工具旋转装置(14)可旋转地支撑工具(W,T,TW NI,TW I)。 工具旋转装置(14)通信地耦合到计算资源(12)。 发光装置(16)通信地耦合到计算资源(12)。 光接收装置(18)通信地耦合到计算资源(12)。 机具旋转装置(14)和机具(W,T,TW NI,TW I)布置在发光装置(16)和光接收装置(18)之间。 发光装置(16)和光接收装置(18)基本上与工具旋转装置(14)和工具(W,T,TW NI,TW I)线性对准,使得在激活发光装置 (16)中,由发光装置(16)发射的光(L)指向工具(W,T,TW Ni,TW i)和光接收装置(18)两者,由此光接收装置 (18)捕获与由发光器件(16)发射的光(L)的一部分(L 2)相对应的图像和由器具(W,T)的至少一部分形成的阴影(L 1' ,TW NI,TW I)。 阴影(L 1')对应于未被光接收装置(18)接收的光(L)的另一部分(L 1)。 光接收装置(18)将所捕获的图像传送到计算资源(12)以确定工具(W,T,TW NI,TW I)的均匀性或缺乏均匀性。 还公开了利用系统(10)的方法(100)。 还公开了一种计算机程序产品。
    • 8. 发明公开
    • INFLATION PROBE FOR INFLATING A TIRE-WHEEL ASSMBLY
    • 用于填充轮胎组件的通气探针
    • EP3199388A1
    • 2017-08-02
    • EP17161161.9
    • 2013-01-10
    • Android Industries LLC
    • LAWSON, Lawrence, J.REECE, Robert
    • B60C25/05B60C25/128B60C23/10B60S5/04B60C25/14
    • B60C25/0515B60C25/145B60S5/04
    • An inflation work station (700, 800) for inflating a tire-wheel assembly (TW) including a tire (T) mounted to a wheel (W) is disclosed. The inflation work station (700, 800) includes at least one inflation probe (706, 806', 806") including a female portion (706a, 806a) and a male portion (706b, 806b). The male portion (706b, 806b) is arrangable with respect to the female portion (706a, 806a) in one of a non-mated orientation such that the at least one inflation probe (706, 806', 806") is arranged in an offline orientation and a mated orientation such that the at least one inflation probe (706, 806', 806") is arranged in an online orientation. The inflation work station (700, 800) further includes a working device (704, 804) including a controller (724, 824), at least one movement actuator (728a, 728b, 828a, 828b) connected to the controller (724, 824) and the at least one inflation probe (706, 806', 806"). The at least one movement actuator (728a, 728b, 828a, 828b) imparts movement to the male portion (706b, 806b) to result in the online / offline orientation of the at least one inflation probe (706, 806', 806"). The inflation work station (700, 800) includes at least one valve (730, 830', 830") connected to the controller (724, 824) and the at least one inflation probe (706, 806', 806"). The inflation workstation (700, 800) includes at least one pressurized fluid source (732, 832', 832") connected to the at least one inflation probe (706, 806', 806") by way of the at least one valve (724, 824) to permit or deny communication of a pressurized fluid (F) of the at least one pressurized fluid source (732, 832', 832") to a cavity (C) formed by the tire-wheel assembly (TW) for inflating the tire-wheel assembly (TW). A method is also disclosed.
    • 公开了一种用于对包括安装到轮(W)的轮胎(T)的轮胎 - 轮组件(TW)充气的充气工作站(700,800)。 充气工作站(700,800)包括至少一个充气探针(706,806',806“),该充气探针包括阴部分(706a,806a)和阳部分(706b,806b)。阳部分(706b,806b) )可以以非配合取向之一相对于凹形部分(706a,806a)布置,使得至少一个充气探针(706,806',806“)以离线取向和配合取向布置 (700,800)还包括工作装置(704,804),所述工作装置包括控制器(724,824),所述工作装置(704,804)包括至少一个充气探测器(706,806',806“ ,连接至控制器(724,824)和至少一个充气探针(706,806',806“)的至少一个移动致动器(728a,728b,828a,828b)。 所述至少一个移动致动器(728a,728b,828a,828b)赋予所述凸形部分(706b,806b)的移动以导致所述至少一个充气探针(706,806',806“)的在线/ (700,800)包括连接到控制器(724,824)和至少一个充气探针(706,806',806“)的至少一个阀(730,830',830”)。 充气工位(700,800)包括通过至少一个阀门(732,832',832“)连接到至少一个充气探针(706,806',806”)的至少一个加压流体源(732,832' 以允许或拒绝将所述至少一个加压流体源(732,832',832“)的加压流体(F)连通到由所述轮胎 - 轮子组件(TW)形成的空腔(C),以用于 给轮胎轮组件(TW)充气。 还公开了一种方法。