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    • 31. 发明申请
    • Ball joint
    • 球接头
    • US20030077114A1
    • 2003-04-24
    • US10019736
    • 2002-07-24
    • Klaus BrnullkerMartin RechtienWolfgang KleinerReinhard Buhl
    • F16D001/12
    • F16C11/069F16C11/0633F16C11/0671F16C11/0676Y10T403/32721Y10T403/32737
    • The present invention pertains to a ball-and-socket joint, comprising a joint housing 1 with a housing recess 2, a pivot pin 4, which is mounted in the housing recess with its joint ball 3 provided with a surface protection, and whose pin section protrudes from a housing opening 18, with a bearing shell 5 arranged between the joint housing and the joint ball, and with a closing ring 7, which closes the housing recess of the joint housing and tensions the bearing shell arranged therein in the joint housing. The closing ring follows essentially with its inner contour the outer contour of the bearing shell due to a bevel or a radius formed. The closing ring 7 to be inserted into the joint housing is fixed in its position in the joint housing 1 and has a sealing lip 17 which is in contact with the joint ball 3 under elastic pretension on the side of the housing opening 18 through which the pin section of the pivot pin 4 protrudes from the joint housing 1.
    • 本发明涉及一种球窝接头,其包括具有壳体凹部2的接头壳体1,枢轴销4,其安装在壳体凹部中,其接头球3设置有表面保护,并且其销 部分从壳体开口18突出,其中轴承壳5布置在接头壳体和接头球之间,并且具有闭合环7,该闭合环7封闭接头壳体的壳体凹部并且将布置在其中的轴承壳体在接头壳体 。 闭环基本上以其内轮廓为基础,由于形成了斜面或半径,轴承壳的外轮廓。 插入接头壳体中的封闭环7固定在接头壳体1中的位置,并且具有密封唇17,该密封唇17在弹性预紧力下与接头球3接触,在壳体开口18侧, 枢轴销4的销部从接头壳体1突出。
    • 32. 发明授权
    • Radiographic source connector with improved coupling mechanism
    • 射线源连接器,具有改进的耦合机制
    • US06481914B1
    • 2002-11-19
    • US09543920
    • 2000-04-06
    • Steven J. GrenierGeorge W. Parsons
    • Steven J. GrenierGeorge W. Parsons
    • F16C1106
    • F16C11/069F16C1/14Y10T24/45272Y10T403/32631Y10T403/32803Y10T403/57
    • A coupling mechanism secures a radiographic source connector to a drive assembly to prevent unintentional release. The source connector includes a cup sleeve with a sleeve slot cut along its axis. The sleeve is spring-loaded to capture the ball end of a drive assembly by applying a positive locking force from the spring. The sleeve slot provides clearance for the neck of the ball end of the drive connector ball. This clearance allows the source connector to pivot approximately 90° without detaching from the drive cable at any angle or orientation. The source connector cannot be disconnected from the drive assembly due to a force applied in any direction. The only mechanism for release is to intentionally move the sleeve in a direction opposite the urging of the spring and then remove the drive connector ball.
    • 耦合机构将射线源连接器固定到驱动组件以防止意外释放。 源连接器包括具有沿其轴线切割的套筒槽的杯套筒。 套筒是弹簧加载的,通过施加来自弹簧的积极锁定力来捕获驱动组件的球端。 套筒槽为驱动连接器球的球端的颈部提供间隙。 该间隙允许源连接器枢转大约90°,而不会以任何角度或方向从驱动电缆分离。 由于沿任何方向施加的力,源连接器不能与驱动器组件断开连接。 释放的唯一机制是有意地使套筒沿与弹簧的推动相反的方向移动,然后移除驱动连接器球。
    • 33. 发明申请
    • High strength ball end for a hitch link
    • 高强度球端为挂钩链接
    • US20020168122A1
    • 2002-11-14
    • US09851826
    • 2001-05-09
    • Deere & Company, a Delaware corporation
    • Daniel Benjamin KletzliShane Michael Boden
    • F16C023/08F16C025/04
    • F16C11/069A01B59/008B60D1/141F16C11/0614Y10T403/32631Y10T403/32704
    • A bearing assembly for a hitch link having a removable spherical bushing within a socket is arranged to be symmetrical about plane dissecting the socket lengthwise of the link. The socket is formed with laterally extending protrusion to increase the socket strength at the location of the greatest tension forces. The socket is configured with an entry slot for the bushing that is normal to the length of the link so that the slot does not interfere with the area of the contact wear surface between the busing and the socket. Once the bushing is installed in the socket, a sleeve is inserted into a bore of the bushing. One end of the sleeve has a raised retaining lip and the opposite end of the sleeve carries a snap ring groove. A snap ring is seated in the groove and retains the sleeve in the bushing.
    • 用于具有在插座内的可移除的球形衬套的搭接连杆的轴承组件被布置成关于在连接件纵向剖切插座的平面对称。 插座形成有横向延伸的突起,以在最大张力的位置增加插座强度。 插座配置有一个垂直于连接件长度的衬套进入槽,这样插槽不会干扰插座和插座之间的接触磨损表面的区域。 一旦衬套安装在插座中,套筒就被插入衬套的孔中。 套筒的一端具有凸起的保持唇,并且套筒的相对端承载卡环槽。 卡环位于凹槽中并将套筒保持在衬套中。