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    • 72. 发明公开
    • Split yoke universal joint.
    • Kreuzgelenk mit geschlitztem Joch。
    • EP0206026A1
    • 1986-12-30
    • EP86107603
    • 1986-06-04
    • MORGAN CONSTRUCTION CO
    • KOELLING ROBERT K SR
    • F16D3/38B21B35/14F16D3/26F16D3/40F16D3/41
    • F16D3/41B21B35/145Y10T403/69
    • A high torque universal joint has a cross (10) formed by two mutually perpendicular pairs of coaxial trunnions (11), each pair of trunnions being rotatably received in bearings (26) which in turn are coaxially retained in blind bores (24) in the bearing caps (22) of one of two yokes (12, 12 min ). The yokes are subdivided into mating half sections (12a, 12b) which each include one of the bearing caps. The mating half sections are separably interconnected (48, 50) and are provided with juxtaposed confronting surfaces (38) lying on opposite sides of first yoke reference planes extending through the universal joint center (X). The mating half sections have end surfaces (52) which are adapted to abut the flanged ends (18) of rotatable elements (20) at second yoke reference planes. The first and second reference planes of each yoke are mutually perpendicular, and first and second key members (44, 54) are located respectively at the first and second reference planes. The restraining forces acting at the first and second yoke reference planes coact during service of the joint to prevent relative movement between the mating yoke half sections.
    • 高扭矩万向接头具有由两个相互垂直的同轴耳轴对(11)形成的十字(10),每对耳轴可旋转地容纳在轴承(26)中,轴承(26)又同轴地保持在盲孔(24)中 两个轭之一(12,12分钟)的轴承盖(22)。 轭体被细分为配合半部分(12a,12b),每个部分包括一个轴承盖。 配合半部分可分离地相互连接(48,50)并且设置有位于通过万向接头中心(X)延伸的第一轭参考平面的相对侧上的并列的相对表面(38)。 配合半部分具有适于在第二磁轭参考平面处抵靠旋转元件(20)的凸缘端部(18)的端面(52)。 每个轭的第一和第二参考平面相互垂直,并且第一和第二键构件(44,45)分别位于第一和第二参考平面上。 作用在第一和第二磁轭参考平面处的约束力在接头的使用期间共同作用,以防止配合磁轭半部之间的相对移动。
    • 73. 发明公开
    • IN-SHAFT KEY LOCKING DEVICE
    • EP4147800A1
    • 2023-03-15
    • EP21842514.8
    • 2021-07-13
    • Dalian Field Manufacturing Co., Ltd
    • GAO, Guowu
    • B21B35/14
    • An in-shaft key locking device, comprising a first abutment shaft (1a), a second abutment shaft (2a), replacement press rollers (3a), and push arms (4a). Each replacement press roller (3a) is sleeved on the first abutment shaft (1a); a matching shaft hole (1a1) is formed on an abutment shaft end of the first abutment shaft (1a); a matching shaft shoulder (2a1) is provided on an abutment shaft end of the second abutment shaft (2a); the matching shaft shoulder (2a1) can be inserted into the matching shaft hole (1a1), so that the first abutment shaft (1a) and the second abutment shaft (2a) achieve axial abutment; a positioning boss (1a2) is further provided inside the matching shaft hole (1a1); a positioning recess (2a2) is further formed on the end of the matching shaft shoulder (2a1); after the matching shaft shoulder (2a1) is inserted into the matching shaft hole (1a1), the first abutment shaft (1a) is rotated, and the positioning boss (1a2) can synchronously rotate along with the first abutment shaft (1a) and is inserted to the positioning recess (2a2) so as to realize the radial positioning of the first abutment shaft (1a) and the second abutment shaft (2a); and after positioning, the replacement press roller (3a) is pushed, so that the replacement press roller (3a) can be accurately introduced into the second abutment shaft (2a) from the first abutment shaft (1a).