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    • 77. 发明授权
    • Single-split cage
    • 单分割笼
    • US09004775B2
    • 2015-04-14
    • US13392761
    • 2011-09-13
    • Yutaka Ishibashi
    • Yutaka Ishibashi
    • F16C33/46
    • F16C33/4694F16C19/463F16C33/4635F16C2226/70
    • The present invention provides a single-split cage capable of continuously holding a plurality of rolling elements stably for a long time by eliminating the difference in the strength between split regions, by maintaining the strength of the entire cage uniform in the circumferential direction and by maintaining the dimensional accuracy between the split regions constant at the time of molding and also capable of improving load capacity and achieving low cost for assembly. A split section 10 for splitting at one portion in the circumferential direction is formed at regions (split regions 10a and 10b) extending between pockets 2p adjacent to each other in the circumferential direction, engagement sections being engageable with each other are provided at the circumferential central position between the pockets and on a one-side split face Sa and the other-side split face Sb formed by splitting the regions, and in a state in which both the engagement sections are engaged with each other, predetermined clearances are formed between the one-side split face and the other-side split face and between the engagement sections.
    • 本发明提供一种能够通过将保持整个保持架的强度在圆周方向上均匀并且通过维持在一起的长度保持多个滚动元件而能够通过消除分割区域之间的强度的差异而连续保持多个滚动元件的单分离式保持架 分割区域之间的尺寸精度在成型时恒定,并且还能够提高负载能力并且实现低的组装成本。 在圆周方向上彼此相邻的凹穴2p之间延伸的区域(分割区域10a和10b)处形成有用于在圆周方向上的一个部分处分开的分割部分10,在周向中心 在一个侧面分开面Sa和另一侧分割面Sb之间形成凹槽之间的位置,并且在两个接合部彼此接合的状态下,在一个侧面之间形成预定的间隙 并且在接合部之间。
    • 79. 发明申请
    • SPLIT BEARING CAGE FOR ROLLING ELEMENT BEARING
    • 用于滚动元件轴承的分离轴承座
    • US20130308890A1
    • 2013-11-21
    • US13472629
    • 2012-05-16
    • Dieter Steblau
    • Dieter Steblau
    • F16C33/46B21D53/12
    • B21D53/12F16C33/4635F16C33/4694F16C2226/74F16C2361/53F16C2361/61Y10T29/49691
    • A rolling-element bearing cage includes two axially spaced-apart side rings extending in a circumferential direction. Each side ring is split in the circumferential direction along at least one cutting line, thereby defining bordering surfaces on first and second bearing cage sections. A plurality of connecting bridges connects the side rings in an axial direction. First and second pairs of mutually-opposing first projections and corresponding first openings are disposed on the side rings along the bordering surfaces of the first and second bearing cage sections and fix the bordering surfaces to each other in at least first and second directions that are perpendicular to each other. A pair of a second projection and a corresponding second opening is disposed axially between the first and second pairs of first projections and first openings and fixes the bordering surfaces to each other in a third direction perpendicular to the first and second directions.
    • 滚动体轴承保持架包括沿圆周方向延伸的两个轴向间隔开的侧环。 每个侧环沿圆周方向沿着至少一条切割线分开,从而限定第一和第二轴承保持架部分上的边界表面。 多个连接桥沿轴向连接侧环。 第一和第二对相互相对的第一突起和对应的第一开口沿着第一和第二轴承保持架部分的边界表面设置在侧环上,并且在垂直于至少第一和第二方向的至少一个和第二个方向上将边界面彼此固定 对彼此。 一对第二突起和对应的第二开口轴向设置在第一和第二对第一突起和第一开口之间,并且在垂直于第一和第二方向的第三方向上将边界表面彼此固定。
    • 80. 发明申请
    • Eccentric Bearing
    • 偏心轴承
    • US20130195390A1
    • 2013-08-01
    • US13695662
    • 2011-03-10
    • Juergen HaeckerNorbert Alaze
    • Juergen HaeckerNorbert Alaze
    • F16C19/50
    • F16C19/50F04B9/04F04B9/045F16C3/22F16C23/10F16C33/3887F16C33/4694F16C33/543
    • An eccentric bearing for an electrohydraulic piston pump assembly of a vehicle brake system includes a shaft configured to be driven in rotation about its axis, a bearing ring which is eccentric relative to the shaft, and rolling bodies between the bearing ring and the shaft. The rolling bodies have different diameters corresponding to a varying width of a gap between the bearing ring and the shaft. When the shaft is driven in rotation, an eccentricity of the bearing ring revolves around the shaft at half of the rotational speed of the shaft and drives pump pistons to perform a reciprocating movement. A rolling body cage is open between the two largest rolling bodies. The rolling body cage loads the rolling bodies into the tapering gap and ensures that the rolling bodies revolve on the shaft when the shaft is driven.
    • 用于车辆制动系统的电动液压活塞泵组件的偏心轴承包括被构造成围绕其轴线旋转地驱动的轴,相对于轴偏心的轴承环以及在轴承环和轴之间的滚动体。 滚动体具有与轴承环和轴之间的间隙的变化宽度相对应的不同直径。 当轴旋转驱动时,轴承环的偏心度围绕轴的一半旋转,并且驱动泵活塞进行往复运动。 滚动体保持架在两个最大的滚动体之间打开。 滚动体笼将滚动体装载到锥形间隙中,并确保当轴被驱动时滚动体在轴上旋转。