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    • 53. 发明公开
    • Gas spring end member as well as gas spring assembly and suspension system including same
    • Gasfeder-Endanordnung sowie Gasfederbaugruppe undAufhängungssystemdamit
    • EP2505391A1
    • 2012-10-03
    • EP12002299.1
    • 2012-03-29
    • Firestone Industrial Products Company, LLC
    • Street, StephenKoeske, Paul
    • B60G11/28
    • B60G11/28B60G11/27B60G2202/152B60G2204/126B60G2206/80B62D65/12F16F9/052F16F9/057F16F2238/02Y10T29/49609Y10T29/49622
    • A gas spring end member (202, 204) is dimensioned for securement along an associated suspension member having an associated planar surface (FPS, SPS) and at least an associated first side surface (SSF). The gas spring end member (202, 204) can include a base wall (226) disposed transverse to a longitudinal axis and a bracket wall (230, 232) that extends longitudinally-outwardly from the base wall (226). The bracket wall (230, 232) can be adapted for operative connection to the associated suspension member such that the gas spring end member (202, 204) can be supported thereon with the base wall (226) disposed in longitudinally spaced-apart relation to the associated planar surface of the associated suspension member. A gas spring assembly (200) including such an end member (202, 204) can be included. A suspension system and a method of installation including such a gas spring assembly (200) can also be included.
    • 尺寸为气体弹簧端部构件(202,204)的尺寸用于沿具有相关联的平面(FPS,SPS)和至少相关联的第一侧表面(SSF)的相关悬架构件固定。 气体弹簧端部构件(202,204)可以包括横向于纵向轴线设置的底壁(226)和从基壁(226)纵向向外延伸的托架壁(230,232)。 托架壁(230,232)可以适​​于与相关联的悬挂构件的操作性连接,使得气体弹簧端部构件(202,204)能够被支撑在其上,其中底壁(226)以纵向间隔开的关系 相关联的悬挂构件的相关联的平面。 可以包括包括这种端部构件(202,204)的气体弹簧组件(200)。 还可以包括悬架系统和包括这种气弹簧组件(200)的安装方法。
    • 55. 发明公开
    • Asymmetric wire rope isolator and method of manufacture
    • 非对称电缆绝缘体和制备方法
    • EP1666760A3
    • 2006-08-02
    • EP06000698.8
    • 2000-12-20
    • Enidine Incorporated
    • Schneider, StefanDickerson, Kenneth A.Latvis, Michael
    • F16F7/14
    • F16F7/14F16F2236/02F16F2236/027F16F2238/02Y10T29/49615
    • A wire rope isolator that includes a wire rope (30) manipulated between a pair of mounting blocks (10,20) so that bights of wire rope having elastic properties are formed. A first mounting block (10) has at one end a blind hole (11) and a closely spaced lateral hole (12) that passes completely therethrough said mounting block (10). On the end of the first mounting block opposite that of the aforementioned pair of holes is a lone lateral hole (13) that passes completely therethrough the first mounting block (10). The second mounting block (20) has at opposite ends a lateral hole (21,22) that completely passes therethrough the second mounting block (20). To start the wire rope winding process, one end of the wire rope is maneuvered to the back wall of the blind hole (11) so that the end of the rope abuts the back wall. Tension is applied to the wire rope as it is manipulated through the lateral holes contained in the lateral blocks. It is desirable that the holes (11-13) of the first block (10) be perpendicular to the holes (21,22) of the second block (21). After four U-shaped bights have been formed in generally a cloverleaf pattern about the mounting blocks, the free end of the wire rope is passed completely through the lateral hole (12) nearest the originating blind hole (11). The wire rope is then secured to the mounting blocks by either crimping or staking. To minimize dimensional and stiffness variation in the assembled isolator, the tension is maintained after the winding process, After the crimping/staking process, the four bights created should possess spring-like properties capable of dampening vibrational energy. The four bights should have equivalent dimensions and stiffness.