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    • 1. 发明授权
    • Rodless cylinder with internal bearings
    • 带内轴承的无杆气缸
    • US5988042A
    • 1999-11-23
    • US957061
    • 1997-10-24
    • Michael E. Lamle
    • Michael E. Lamle
    • F15B15/08F01B29/00
    • F15B15/082
    • Internal bearings for a rodless piston assembly. The internal bearings are seated on inclined rail structures of a transmission bracket. Force applied to the internal bearings causes them to slide up the inclined rail structures and press against the inner surface of the rodless piston bore. As a result, a radially inward force is applied to the transmission bracket. This radially inward force is transmitted to a saddle and external bearing assembly. The internal bearings thus hold the saddle against the outer surface of the rodless piston cylinder. Piston elements for rodless piston assemblies are movably coupled to the transmission brackets so that the piston elements float with respect to the transmission bracket. The floating piston elements can self-align with the rodless piston bore.
    • 用于无杆活塞组件的内部轴承。 内部轴承位于传动支架的倾斜轨道结构上。 施加到内部轴承的力使得它们向上滑动倾斜的轨道结构并压靠无杆活塞孔的内表面。 结果,向传动支架施加径向向内的力。 该径向向内的力传递到鞍座和外部轴承组件。 内部轴承因此将鞍座固定在无杆活塞气缸的外表面上。 用于无杆活塞组件的活塞元件可移动地联接到传动支架,使得活塞元件相对于传动支架浮动。 浮动活塞元件可以与无杆活塞孔自对准。
    • 2. 发明授权
    • Bearing rail system
    • 轴承轨系统
    • US06364531B1
    • 2002-04-02
    • US09532720
    • 2000-03-22
    • Michael E. Lamle
    • Michael E. Lamle
    • F16C2906
    • F16C29/005F16C29/004F16C29/0633F16C33/60F16C33/64
    • A bearing rail system for load-bearing transfer devices which includes a pair of split rail sections that are designed and configured to engage and lock together when manipulated in a rail channel. The rail channel can be provided in a support structure which functions as a guide for a load-bearing transfer system. The split rail sections include cooperating pivotal structures which can engage one another and about which the split rail sections can be pivoted so as to expand the overall or effective base of the rail system. By positioning the split rail sections in a rail channel and pivoting them about one another, the overall or effective base can be expanded to secure the rail system in the rail channel.
    • 一种用于承载转移装置的轴承轨道系统,其包括一对分裂轨道部分,其被设计和构造成在轨道通道中操作时接合并锁定在一起。 轨道通道可以设置在用作承载传递系统的引导件的支撑结构中。 分开的轨道部分包括协作的枢转结构,其可以彼此接合并且分割轨道部分可围绕该枢转结构枢转,以便扩展轨道系统的整体或有效基座。 通过将分开的轨道部分定位在轨道通道中并将它们彼此枢转,可以扩展整体或有效基座以将轨道系统固定在轨道通道中。
    • 3. 发明授权
    • Rodless slides
    • 无杆幻灯片
    • US06257123B1
    • 2001-07-10
    • US09309139
    • 1999-05-10
    • Glen A. MorrMichael E. Lamle
    • Glen A. MorrMichael E. Lamle
    • F01B2900
    • F15B15/082
    • Internal bearing assemblies for a rodless slide assembly. The internal bearing assemblies are positioned in bearing slots which are provided in portions of a transmission bracket and include inner bearing members and outer bearing shell members. Force applied to the internal bearing members causes them to slide up inclined surfaces of the bearing slots. The inner bearing members press against the outer bearing shell members which in turn press against the inner surface of the rodless slide bore. As a result, a radially inward force is applied to the transmission bracket. This radially inward force is transmitted to a saddle and external bearing assembly. The internal bearing assemblies thus hold the saddle against the outer surface of the rodless slide.
    • 用于无杆滑动组件的内部轴承组件。 内部轴承组件定位在轴承槽中,该轴承槽设置在传动支架的一部分中,并且包括内轴承构件和外轴承壳构件。 施加到内部轴承构件的力使它们滑动轴承槽的倾斜表面。 内部轴承构件压靠外部轴承壳构件,其又压靠无杆滑动孔的内表面。 结果,向传动支架施加径向向内的力。 该径向向内的力传递到鞍座和外部轴承组件。 内部轴承组件因此将鞍座保持在无杆滑块的外表面上。