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    • 21. 发明授权
    • Radial rolling element bearing
    • 径向滚动体轴承
    • US09422982B2
    • 2016-08-23
    • US14652247
    • 2013-11-08
    • Schaeffler Technologies AG & Co. KG
    • Jan-Rene AustEkrem AkyolEdgar Schedl
    • F16C33/58F16C43/04F16C19/26F16C35/077F16C19/22F16C33/60F16C19/46
    • F16C33/586F16C19/225F16C19/26F16C19/46F16C33/585F16C33/605F16C35/077F16C2226/74
    • A radial rolling element bearing (1) formed of a cylindrical outer ring (3) that is inserted into a housing (2), and a rolling element cage (4) arranged in said outer ring and formed by a plurality of roller-shaped rolling bodies (6) which are inserted into a bearing cage (5) and held thereby, equidistantly, in a circumferential direction, and roll on an outer raceway (8) formed by the inner lateral surface (7) of the outer ring, and on an inner raceway (11) formed by the outer lateral surface (9) of a shaft (10) to be mounted or a smooth cylindrical inner ring pushed onto said shaft. The roller race is axially guided by two separate flanged disks (14, 15) which lie against the axial sides (12, 13) of the outer ring and are axially secured, together with the outer ring, by securing elements which engage in recesses (16, 17) in the housing. According to the invention, this radial rolling element bearing is characterized in that said flanged disks include a right-angled profiled cross-section that has a horizontal securing leg (18, 20) and a vertical flanged leg (19, 21) and, by pressing their horizontal securing legs onto two peripheral stepped shoulders (22, 23) in the edge regions of the outer lateral surface (24) of the outer ring, are secured thereto; and in that the securing elements which engage in recesses in the housing for the purpose of axially securing said rolling element bearing are designed as spring elements (25, 26) integrated into the securing legs of the flanged disks.
    • 一种由插入壳体(2)中的圆柱形外圈(3)形成的径向滚动体轴承(1)和布置在所述外圈中并由多个辊状滚动形成的滚动体保持架(4) 插入到轴承保持架(5)中并沿圆周方向等距地保持的主体(6),并且在由外圈的内侧表面(7)形成的外滚道(8)上滚动,并在 由待安装的轴(10)的外侧表面(9)形成的内滚道(11)或被推到所述轴上的光滑的圆柱形内环。 滚子座圈由两个独立的法兰盘(14,15)轴向引导,该两个独立的法兰盘(14,15)位于外圈的轴向侧面(12,13)上,并与外圈一起通过固定在凹槽中的元件 16,17)。 根据本发明,该径向滚动元件轴承的特征在于,所述凸缘盘包括具有水平固定腿(18,20)和垂直凸缘腿(19,21)的直角成型横截面,并且由 将其水平固定腿压在外环的外侧表面(24)的边缘区域中的两个周边阶梯肩(22,23)上,固定到其上; 并且其中为了轴向固定所述滚动元件轴承目的而啮合壳体中的凹部的固定元件被设计为与法兰盘的固定支腿集成的弹簧元件(25,26)。
    • 23. 发明授权
    • Converter collar bearing for a torque converter
    • 变矩器轴承用于变矩器
    • US09353794B2
    • 2016-05-31
    • US14487469
    • 2014-09-16
    • Schaeffler Technologies GmbH & Co. KG
    • Alexander PabstFrank Beeck
    • F16C19/26F16C33/64F16C19/46F16C33/58F16C27/04F16C43/06
    • F16C33/588F16C19/26F16C19/466F16C27/04F16C33/585F16C33/64F16C43/065F16C2360/00F16H41/24Y10T29/49686
    • A bearing position for a torque converter, wherein a pump impeller is connected to a converter neck, and the pump impeller is rotatably mounted on the bearing position by at least one roller bearing in a housing, wherein the roller bearing comprises an outer rolling raceway, assigned to the converter neck and facing radially outwards, and an inner rolling raceway, assigned to the housing and facing radially inwards, and rollers disposed radially between the rolling raceways, wherein the bearing position comprises at least one radially elastically designed section of a sleeve of the roller bearing, where the sleeve is provided with the inner rolling raceway, wherein the section, enclosing an elastic convex raceway curvature, is resiliently prestressed in the radial direction against at least a first roller of the rollers, the first roller supported on the outer rolling raceway, and supported in the opposite radial direction on the housing.
    • 一种用于变矩器的轴承位置,其中泵叶轮连接到转换器颈部,并且泵叶轮通过壳体中的至少一个滚子轴承可旋转地安装在轴承位置,其中滚子轴承包括外滚动滚道, 分配给转换器颈部并面向径向向外的内滚动滚道和分配给壳体并面向径向向内的内滚动滚道以及径向设置在滚动滚道之间的滚子,其中轴承位置包括至少一个径向弹性设计的套筒 所述滚子轴承,其中所述套筒设置有所述内滚动滚道,其中所述包围弹性凸起的滚道曲率的所述部分沿径向弹性预应力抵靠所述滚子的至少第一滚子,所述第一滚子支撑在所述外滚筒 滚动的滚道,并且以相反的径向支撑在壳体上。
    • 27. 发明授权
    • Combined load rolling bearing
    • 组合负载滚动轴承
    • US09062710B2
    • 2015-06-23
    • US14169904
    • 2014-01-31
    • Brian LeeJames Kevin Brown
    • Brian LeeJames Kevin Brown
    • F16C19/34F16C19/54F16C33/46F16C19/38F16C19/46F16C33/48F16C33/58
    • G01R31/3177F16C19/381F16C19/463F16C33/4635F16C33/48F16C33/585
    • A combined load rolling bearing including a roller assembly with a first cage including a plurality of radial cylindrical rollers and a plurality of axial cylindrical rollers is provided. The radial cylindrical rollers are supported so that they can roll on a radially outer race of a first bearing ring and a radially inner race of a second bearing ring. The axial cylindrical rollers are supported so that they can roll on a first axial race of the first bearing ring and an intermediate axial ring. A needle roller assembly is supported between the intermediate axial ring and a second axial race of the second bearing ring. The needle roller assembly includes a second cage with a plurality of needle rollers and the needle roller assembly rotates at a speed differential between the radial cylindrical rollers and the axial cylindrical rollers.
    • 提供一种组合式负载滚动轴承,其包括具有包括多个径向圆柱滚子和多个轴向圆柱滚子的第一保持架的滚子组件。 径向圆柱滚子被支撑成使得它们能够在第一轴承环的径向外座圈和第二轴承环的径向内座圈上滚动。 轴向圆柱滚子被支撑成使得它们可以在第一轴承环的第一轴向座圈和中间轴向环上滚动。 滚针组件支撑在中间轴向环与第二轴承环的第二轴向座圈之间。 针辊组件包括具有多个针辊的第二保持架,并且针辊组件以径向圆柱滚子和轴向圆柱滚子之间的速度差异旋转。
    • 28. 发明申请
    • SINGLE-SPLIT CAGE
    • US20150167740A1
    • 2015-06-18
    • US14629634
    • 2015-02-24
    • NSK LTD.
    • Yutaka ISHIBASHI
    • F16C33/46F16C19/46
    • F16C33/4694F16C19/463F16C33/4635F16C2226/70
    • 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.
    • 29. 发明授权
    • Axial control assembly
    • 轴向控制组件
    • US09004766B1
    • 2015-04-14
    • US13958371
    • 2013-08-02
    • Gilberto Mesa
    • Gilberto Mesa
    • F16C21/00F16C33/58F16C19/30F16C19/46F16C19/36F16C33/60
    • F16C33/605F16C13/006F16C19/26F16C19/36F16C19/46F16C19/507F16C33/581F16C35/063F16C2226/60F16C2226/62
    • An axial control assembly comprises a bearing assembly and a bearing mount assembly, wherein the bearing mount assembly is structured to secure the bearing assembly in an operative configuration relative to a rotatable element of a mechanical device. The bearing assembly includes an inner bearing casing and an outer bearing casing structured to rotatably engage one another. The bearing mount assembly includes at least one axial control member disposed in an abutting relation to an axial load surface of one of the inner or outer bearing casing, and the axial control member is further positioned to counteract an axial load generated by a rotational movement of the rotational element of the mechanical device.
    • 轴向控制组件包括轴承组件和轴承安装组件,其中轴承安装组件被构造成将轴承组件相对于机械装置的可旋转元件固定在可操作的构造中。 轴承组件包括内轴承壳体和构造成可旋转地彼此接合的外轴承壳体。 所述轴承安装组件包括至少一个轴向控制构件,所述至少一个轴向控制构件以与内轴承壳体或外轴承壳体中的一个的轴向载荷表面邻接的方式设置,并且所述轴向控制构件进一步定位成抵消由旋转运动产生的轴向载荷 机械装置的旋转元件。
    • 30. 发明申请
    • Shell-Type Needle Roller Bearing
    • 壳型滚针轴承
    • US20080267552A1
    • 2008-10-30
    • US10566956
    • 2004-07-29
    • Akira Takahashi
    • Akira Takahashi
    • F16C33/34F16C19/46
    • F16C19/46F16C33/588F16C2240/84
    • Durability of a pair of inward flange portions 4b and 4c formed on both ends of a shell 1c is ensured while maintaining load capacity, irrespective of a thrust load applied from each needle 2a. Inside surfaces 10a and 10b of both inward flange portions 4b and 4c are formed as inclined surfaces inclined in a direction where a distance between the surfaces increases toward the radial inward direction. Each of both axial end surfaces of the needle 2a is constructed from a beveled portion 8 on an outer peripheral edge and a flat surface portion 9. The structure prevents a large moment load from being applied to base end portions of the inward flange portions 4b (4c) even when end surfaces of the needles 2a are abutted against an inside surface 10a (10b) of an inward flange portion 4b (4c) by a thrust load.
    • 确保形成在壳体1c的两端上的一对向内凸缘部分4b和4c的耐久性,同时保持负载能力,而不管从每个针2a施加的推力负载。 两个向内凸缘部分4b和4c的内表面10a和10b形成为在表面之间的距离朝向径向向内方向增加的方向上倾斜的倾斜表面。 针2a的两个轴向端面中的每一个由外周边缘上的斜面部分8和平坦表面部分9构成。 该结构即使当针2a的端面抵靠内侧凸缘的内表面10a(10b)时,也能够防止大的力矩载荷施加到向内的凸缘部分4b(4c)的基端部 部分4b(4c)通过推力载荷。