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    • 2. 发明申请
    • TIRE HANDLING APPARATUS AND METHOD
    • 轮胎处理设备和方法
    • WO2012088226A1
    • 2012-06-28
    • PCT/US2011/066387
    • 2011-12-21
    • MICRO-POISE MEASUREMENT SYSTEMS, LLCWARHOLIC, Michael, D.CARGOULD, Barry, D.PERECMAN, Jack, L.
    • WARHOLIC, Michael, D.CARGOULD, Barry, D.PERECMAN, Jack, L.
    • B65G29/00
    • B65G15/12B29D2030/0027B65G21/14
    • A conveyor apparatus for conveying tires through a tire testing system such as tire uniformity machine. The apparatus includes a first conveyor, including a pair of spaced-apart conveyor belts defining a tire support surface engageable with the tire to be transported. An auxiliary conveyor, including a pair of spaced-apart auxiliary conveyor belts is provided, which are also engageable with the tire to be tested. The auxiliary conveyor includes an upstream section for transporting the tire from a delivery position to a tire test position and a downstream section for transporting a tire from the tire test position to a discharge position. The auxiliary conveyors, including inner end portions that are extendable and retractable with respect to the tire test position and, in particular, with respect to a tire testing rim located at the test position..
    • 一种用于通过诸如轮胎均匀机的轮胎测试系统输送轮胎的输送装置。 该设备包括第一输送机,其包括一对间隔开的输送带,其限定可与要运输的轮胎接合的轮胎支撑表面。 提供辅助输送机,其包括一对间隔开的辅助输送带,其也可与要测试的轮胎接合。 辅助输送机包括用于将轮胎从输送位置传送到轮胎测试位置的上游部分和用于将轮胎从轮胎测试位置输送到排出位置的下游部分。 辅助输送机包括相对于轮胎测试位置可伸缩的内端部分,特别是相对于位于测试位置处的轮胎测试轮缘。
    • 4. 发明申请
    • TIRE UNIFORMITY TESTING SYSTEM
    • 轮胎均匀测试系统
    • WO2012071416A2
    • 2012-05-31
    • PCT/US2011/061852
    • 2011-11-22
    • MICRO-POISE MEASUREMENT SYSTEMS, LLCWOLLBRINCK, JamesMATUSZNY, Richard, R.CARGOULD, BarryWILLIAMS, Peter
    • WOLLBRINCK, JamesMATUSZNY, Richard, R.CARGOULD, BarryWILLIAMS, Peter
    • G01M17/02
    • G01M17/02B60C25/002G01M17/021Y10T29/49815Y10T29/49826
    • An apparatus for changing rim sets at a testing station of a tire uniformity testing system that includes a storage unit for storing a plurality of rim set assemblies. A transfer arm is reciprocally movable and includes a gripper mechanism for gripping a rim set assembly and moving it from a storage position to a position at which rims forming part of the rim set assembly are aligned with opposed spindles at the testing station. The rim set assembly includes a bracket having structure engageable by the transfer arm and at least one of the rims forming part of the assembly includes a locking member rotatable between a first position and a second position. The bracket includes a structure for immobilizing the rim to inhibit relative rotation between the rim and the bracket and further includes a lever mechanism for moving the locking member from its first position to its second position in order to engage retaining members forming part of the bracket. The lever mechanism moves the locking member from its second position to its first position when the rim is aligned with an associated spindle in order to engage other retaining members forming part of the spindle. The rim is released from the bracket as the locking member moves to engage the other retaining members. After release, the bracket moves to a remote position spaced from the testing station. To remove the rim sets, the steps for attaching rims to the spindles are reversed in order to release the rims from the spindles while simultaneously engaging the bracket. The resulting rim set assembly is moved to a remote position defined by a storage unit that stores a plurality of rim set assemblies. The disclosed locking member and associated rim can be used to facilitate the manual installation of a test rim to a spindle.
    • 一种用于在轮胎均匀性测试系统的测试站处改变轮辋组件的装置,其包括用于存储多个轮辋组件的存储单元。 传送臂是可往复运动的,并且包括夹持机构,用于夹持轮圈组件并将其从存放位置移动到形成轮圈组件的一部分的轮缘与测试台处的相对的主轴对准的位置。 轮辋组件包括具有可由传送臂接合的结构的支架,并且构成组件的一部分的至少一个轮辋包括可在第一位置和第二位置之间旋转的锁定构件。 支架包括用于固定轮缘以阻止轮缘和支架之间的相对旋转的结构,并且还包括杠杆机构,用于将锁定构件从其第一位置移动到其第二位置,以便接合构成支架的一部分的保持构件。 当边缘与相关联的主轴对准时,杠杆机构将锁定构件从其第二位置移动到其第一位置,以便接合形成主轴的一部分的其它保持构件。 当锁定构件移动以与其它保持构件接合时,边缘从支架释放。 释放后,支架移动到与测试站隔开的远程位置。 为了拆下轮辋组件,将轮辋连接到主轴上的步骤是相反的,以便在同时接合支架的同时将轮辋从主轴上松开。 所得到的轮圈组件移动到由存储多个轮圈组件的存储单元限定的远程位置。 所公开的锁定构件和相关联的边缘可以用于便于将试验轮辋手动安装到主轴。
    • 5. 发明申请
    • TIRE POSITIONING SENSOR
    • 轮胎定位传感器
    • WO2005085794A1
    • 2005-09-15
    • PCT/IB2005/050689
    • 2005-02-24
    • ILLINOIS TOOL WORKS INC.CARGOULD, BarryMULARICK, Bradley S.NEIFERD, Keith A.WNEK, Joseph A.
    • CARGOULD, BarryMULARICK, Bradley S.NEIFERD, Keith A.WNEK, Joseph A.
    • G01M17/02
    • G01M17/021G01M17/022
    • A method and apparatus for chucking tires to be tested in a tire testing apparatus. A lower chuck assembly or spindle includes a lower rim that is engageable with a bead region of the tire to be tested. An upper chuck assembly includes an upper rim that is engageable with an upper bead region of the tire to be tested. The upper rim is reciprocally movable towards and away from the lower rim. A plurality of sensors associated with the movable rim monitors the closing distance between the upper rim and the side wall of the tire that is being chucked, during the chucking process. A controller controls the movement of the upper rim in response to the distance data obtained from the sensors. If the data obtained indicates that the tire is mispositioned on the lower rim, the controller will slow the rate of downward movement of the upper rim and reinitiate a chucking cycle if the upper rim reaches a predetermined lower position and the data from the distance sensors still indicates that the tire is not properly positioned. The sensors are mounted to an adjustable stripping mechanism that forms part of the upper chuck assembly. The positions of the sensors are adjusted as the tire strippers are adjusted.
    • 一种用于在轮胎测试装置中夹紧要测试的轮胎的方法和装置。 下夹盘组件或主轴包括可与待测轮胎的胎圈区域接合的下轮辋。 上卡盘组件包括可与要测试的轮胎的上胎圈区域接合的上边缘。 上边缘可以朝着和远离下边缘往复移动。 在夹紧过程期间,与可移动边缘相关联的多个传感器监测正被夹紧的轮胎的上边缘和侧壁之间的关闭距离。 控制器响应于从传感器获得的距离数据来控制上边缘的运动。 如果获得的数据表明轮胎在下边缘处错位,则控制器将减慢上边缘的向下运动速度,并且如果上边缘到达预定的较低位置并重新开始夹紧循环,并且来自距离传感器的数据仍然 表示轮胎没有正确定位。 传感器安装到形成上部卡盘组件的一部分的可调节剥离机构。 随着轮胎剥离器的调整,调整传感器的位置。