Abstract:
A connecting arrangement for connecting, for example, two components of a jointed shaft via a securing ring, and a jointed shaft including a connecting arrangement of this type.
Abstract:
A displacement unit comprising a tubular outer part on an inner surface of which outer paths are provided. An inner part displaceable in the tubular outer part in axial direction, on whose exterior surface inner paths are provided and a plurality of balls guided in a cage, the balls respectively located in outer and inner paths that are associated with each other in pairs. The tubular outer part and/or the inner part provided with cage guide paths between at least some of the paths for axial guiding the cage. A quantity of the cage guide paths is smaller than the quantity of pairs of paths formed by the outer and inner paths. The cage may comprise a plurality of integral guide path protrusions that engage the cage guide paths.
Abstract:
A system for connecting a shaft (5) to a joint (1), which system includes a shaft journal (10) that is connected to the shaft (5), and a sleeve (4) that is connected to a hub of the joint (1), the sleeve (4) having a shaft-side first opening section (7), a joint-side second opening section (8), and a first radial stop section (14), and the shaft journal (10) having a shaft-side first shaft-journal section (11), a joint-side second shaft-journal section (12), and a second radial stop section (15) for delimiting the insertion path of the shaft journal (10) in the sleeve (4).
Abstract:
A rolling-sliding unit, particularly for a jointed shaft, including a profiled sleeve (4) having outer raceways on an interior surface thereof; a journal (5) which is displaceable in the profiled sleeve (4) and which has inner raceways on an exterior surface thereof, and balls (9) in the raceways between the profiled sleeve and the journal for transmitting torque. A cover is provided on the journal of the rolling-sliding unit and an elastic element is arranged between the profiled sleeve and the journal of the rolling-sliding unit. A jointed shaft comprising a rolling-sliding unit of the described type also is described.
Abstract:
The invention relates to a displacement unit and to a universal shaft comprising said type of displacement unit. Said displacement unit comprises a tubular-type external part on whose inner surface outer paths are provided at least in sections, an inner part that can be displaced in an axial direction in the external part, on whose outer surface inner paths are arranged at least on sections, and balls that are guided in a cage, said balls being arranged for transmitting torque, respectively in outer and inner paths that are arranged in pairs. The external part and/or the inner part comprise cage guide paths for displacing the cage axially, arranged between at least a few of the outer paths or the inner paths. The number of cage guide paths is smaller than the number of pairs of paths formed by the outer paths and the inner paths.
Abstract:
The invention relates to a system for connecting a shaft to a joint, and to a corresponding method, wherein a shaft journal embodied on the end of the shaft that is to be connected to the joint can be inserted into a recess of a joint connection. The aim of the invention is to be able to pre-assemble an d axially align the shaft and the recess in a simple manner. To this end, the shaft journal and the recess are adapted to each other in such a way that the shaft journal can be displaced in the recess in an essentially weak manner in a first section T1 of the insertion path E, and a large amount of force is expended for the displacement of the shaft journal in the recess in a section T2 of the insertion path E.
Abstract:
A homokinetic joint includes an outer hub having outer running tracks, an inner hub having inner running tracks, balls which are guided in pairs consisting of an outer running track and an inner running track and a cage having cage windows, in which the balls are accommodated. The homokinetic joint further includes a sleeve that is firmly connected with the inner hub and disposed coaxial to it and sealing means having an accommodation part that is connected with the outer hub so as to rotate with it. The sealing means have a sealing membrane firmly connected with the outer hub by means of an outer collar, and connected with the sleeve by means of an inner collar, forming a seal, and having a securing ring for fixing the inner collar in place on the sleeve. The sleeve has a circumferential annular groove, into which the sealing membrane engages with an inner annular bead that is formed on.
Abstract:
A homokinetic joint includes an inner hub and an outer hub, wherein several pathways are associated together in pairs, wherein balls which are guided in a cage are received in order to transmit torque between the inner hub and the outer hub. A sealing arrangement includes a set of bellows and seals the homokinetic joint. The radially outer edge of the set of bellows is coupled to the outer hub and/or to a carrier housing engaging therewith. The radially inner edge is secured in a stationary manner on the inner hub.
Abstract:
A rolling-sliding unit, particularly for a jointed shaft, including a profiled sleeve (4) having outer raceways on an interior surface thereof; a journal (5) which is displaceable in the profiled sleeve (4) and which has inner raceways on an exterior surface thereof, and balls (9) in the raceways between the profiled sleeve and the journal for transmitting torque. A cover is provided on the journal of the rolling-sliding unit and an elastic element is arranged between the profiled sleeve and the journal of the rolling-sliding unit. A jointed shaft comprising a rolling-sliding unit of the described type also is described.
Abstract:
A constant velocity joint having an inner hub and an outer hub (1) in which races or tracks (3) associated with one another in pairs are provided and with balls received in respective pairs of races or tracks for transmitting torque. The constant velocity joint is further provided with at least one joint connector (2) which, when the joint is assembled, is connected in a rotationally fixed manner to one of the hubs (1) by mating profile members (6, 7) in order to transmit torque.