This application is a 371 of PCT/EP00/11266 filed Nov. 15, 2000.
The invention concerns a ball screw drive comprising a spindle, a nut surrounding the spindle, and balls arranged between the spindle and the nut, which balls are in rolling contact with a screw track formed on the spindle and on corresponding screw tracks formed on rings arranged within the nut, the screw track of one of the rings arranged within the nut forming a deflecting region for returning the balls from a run-out end of a common turn of the screw tracks to a run-in end of this turn, the screw tracks of the rings arranged in the nut being made on front faces of these rings, so that the screw tracks of two adjacent rings define, together with the screw track of the spindle, an endless circulation channel for the balls.
Ball screw drives serve to transform a rotary motion into a translational motion and are used, for example, in the field of automotive vehicles for the adjustment of steering columns and throttle valves, in mechanical transmissions or in electric door-locking mechanisms. In a ball screw drive known from the document DE 33 23 345 A1, two profiled rings are arranged next to each other within a nut body. Each of these rings is made up of two parts, and the two profiled ring parts of each ring abut with flat ends on each other. A gap is situated between two return channel forming sections of the two parts of each profiled ring. As a result, this structure has complicated contours. The two profiled rings are fixed in the nut body by being integrally cast or injected therein.
In a ball screw drive known from the document U.S. Pat. No. 2,924,113 A, two multi-piece rings are arranged in a nut housing. Each ring comprises an outer washer, an inner washer, a radial flange and a tubular wall. All these parts together with the nut housing form a closed chamber that is filled with rubber.
The document U.S. Pat. No. 3,009,367 shows a ball screw drive that is made up of a very large number of individual parts that have to be assembled in a complicated procedure. This ball screw drive is probably very cost-intensive due to the fact that it involves an expensive combination of separate machined parts and shaped parts.
The object of the invention is to provide a ball screw drive that possesses a high degree of efficiency while being simple to manufacture and easy to assemble and disassemble. At the same time, a displacing device of this type should enable a gentle deflection of the balls with only a slight amount of friction.
The invention achieves the above objects by the fact that one of the rings arranged in the nut is configured as a deflecting cage that comprises screw tracks with deflecting regions on both its front faces.
According to a further proposition of the invention, the nut comprises a bushing flange acting as a ring and comprising a screw track, in which case, an insert ring comprising a screw track is arranged within the nut axially next to the ring-shaped bushing flange.
Finally, according to a third proposition of the invention, the nut is a thin-walled bushing made by shaping without machining and comprises a bent-over bushing flange that serves to close the bushing and to effect lash adjustment and pre-stressing of the ball screw drive, the rings inserted into the nut being two insert rings configured as stamped washers.
As a result of this solution according to the invention, only a few individual parts are required for the ball screw drive, and these parts can be made economically by shaping without machining. In an optimal embodiment, therefore, the ball screw drive is made up of the bushing fabricated by shaping without machining with an integrated track portion made by shaping without machining, the insert ring made by shaping without machining comprising the second track portion, the balls, and the spindle likewise made by shaping without machining comprising a further track portion.
In one embodiment of the screw drive, the insert ring is inserted into the bushing which is then flanged by bending to form the nut. To obtain a defined pre-stress on the ball assembly and to eliminate lash in this screw drive that is configured as a rolling bearing, a spring element can be arranged between the bent-over bushing flange and the insert ring. The spring element can be formed by a ring made of a resilient material.
One of the rings inserted into the nut can be configured as a deflecting cage that comprises screw tracks with deflecting regions on both its front faces. The deflecting cage can be arranged in the nut axially next to an insert ring comprising a screw track. It is also possible to arrange the deflecting cage in the nut with its other axial end next to a bushing flange of the nut comprising a screw track.
Such a ball screw drive comprises only two endless circulation channels for balls. The deflecting cage is arranged within the nut in the intermediate space between the insert ring and the bushing flange that is situated further away from the insert ring. Through the deflecting regions of its screw tracks, the deflecting cage effects a gentle deflection of the balls. Lash adjustment of the ball screw drive can be effected through one of the bushing flanges of the nut configured as a bushing. To obtain a lash-free guidance, a spring can also be disposed in the region of this bushing flange. By virtue of the adjustable bushing flange or the spring, as the case may be, the structure is independent of tolerances.
Examples of embodiment of the invention are represented in the drawings and will be described more closely below. The drawings show:
A ball screw drive according to the invention shown in
On its end directed away from the insert ring 5, the deflecting cage 8 likewise comprises a screw track 10. The deflecting cage 8 is retained axially in the nut 3 by a bushing flange 11 that likewise comprises a screw track 12, the screw track 10 of the deflecting cage 8 and the screw track 12 of the bushing flange 11 being arranged so as to define together with the screw track 2 of the spindle 1, a further endless circulation channel for the balls 4.
On a part of their peripheries, the screw tracks 9 and 10 of the deflecting cage 8 comprise deflecting regions 13. At the end of one turn of the screw track 2 of the spindle 1, the balls 4 are returned through their respective deflecting region 13 to the beginning of this turn.
A ball screw drive according to the invention shown in
After the insertion of the insert ring 5, a spring element 14 can be additionally inserted into the nut 3 before this is bent over at its axial end directed away from the bushing flange 11 to form the bushing flange 6. The bushing flange 6 and the spring element 14 serve in common to produce a defined pre-stress in the ball screw drive.
In the examples of embodiment represented in
In the screw drive of
Number | Date | Country | Kind |
---|---|---|---|
199 60 938 | Dec 1999 | DE | national |
100 12 231 | Mar 2000 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP00/11266 | 11/15/2000 | WO | 00 | 6/10/2002 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO01/44689 | 6/21/2001 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2473743 | Barnes | Jun 1949 | A |
2924113 | Orner | Feb 1960 | A |
3009367 | Striggow | Nov 1961 | A |
3393575 | Irwin | Jul 1968 | A |
3815435 | Eschenbacher et al. | Jun 1974 | A |
4074587 | Brusasco | Feb 1978 | A |
4364282 | Nilsson | Dec 1982 | A |
4509382 | Colautti et al. | Apr 1985 | A |
4612817 | Neff | Sep 1986 | A |
4841796 | Teramachi | Jun 1989 | A |
Number | Date | Country |
---|---|---|
3323345 | Jan 1985 | DE |
4131486 | Mar 1993 | DE |
4340624 | Jul 1994 | DE |
8911025 | Mar 1962 | GB |