ACTUATOR
20180163829 ยท 2018-06-14
Inventors
- Manuel Doppler (Wehr, DE)
- Johannes Federer (Winterthur, CH)
- Christian Schultheiss (Pfaeffikon, CH)
- Marcel Soltermann (Sankt Pantaleon, CH)
Cpc classification
F16H2025/228
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2012
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2266
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T74/19902
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An actuator includes a housing, a first nut in the housing, a second nut in the housing, and a threaded spindle screwed into the first nut and the second nut. The first nut exerts a first force in a first direction on the threaded spindle, and the second nut exerts a second force in a second direction on the threaded spindle, the first direction being different than the second direction.
Claims
1. An actuator comprising: a housing; a first nut in the housing; a second nut in the housing; and a threaded spindle screwed into the first nut and the second nut, wherein the first nut exerts a first force in a first direction on the threaded spindle, and the second nut exerts a second force in a second direction on the threaded spindle, the first direction being different than the second direction.
2. The actuator according to claim 1, wherein there is an angle of at least 30 between the first direction and the second direction.
3. The actuator according to claim 1, further including at least one first rolling-element bearing having an inner ring and an outer ring, wherein the inner ring exerts the first force on the first nut.
4. The actuator according to claim 3, further including at least one second rolling-element bearing having an inner ring and an outer ring, wherein the inner ring of the at least one second rolling-element bearing exerts the second force on the second nut.
5. The actuator according to claim 4, wherein the first nut is coupled to the second nut by a torque-transmitting claw coupling.
6. An actuator comprising an internal thread and at least one nut, and a threaded spindle in the at least one nut, wherein a final geometry of an internal thread of the nut is at least partially generated by screwing the threaded spindle into the at least one nut.
7. The actuator according to claim 6, further including at least one first component including an internally threaded region configured to exert a first force on the threaded spindle substantially perpendicularly to an axis of rotation of the threaded spindle.
8. The actuator according to claim 7, further including at least one spring element exerting a second force on the first component.
9. The actuator according to claim 8, further including at least one second component including an internally threaded region configured to exert a third force on the threaded spindle substantially perpendicular to the axis of rotation of the threaded spindle and opposite the first force.
10. The actuator according to claim 8, wherein the at least one nut comprises a first nut and a second nut and including a cavity between the first and second nuts for accommodating a third nut that receives a load if the first nut or the second nut breaks.
11. The actuator according to claim 6, wherein the threaded spindle is free of clearance with respect to the nut.
12. An operating table or a treatment chair including an actuator according to claim 1.
13. The actuator according to claim 6, wherein the at least one nut comprises a first nut and a second nut on the threaded spindle and further including a first spring biasing the first nut in a first direction substantially perpendicular to an axis of rotation of the threaded spindle and a second spring biasing the second nut in a second direction opposite the first direction.
14. The actuator according to claim 1, wherein the first nut has a first shoulder and the second nut has a second shoulder, wherein the housing includes a first annular surface and a second annular surface, the actuator including: a first rolling-element bearing having an inner ring and an outer ring, the outer ring of the first rolling-element bearing contacting the first annular surface and the inner ring of the first rolling-element bearing contacting the first shoulder, and a second rolling-element bearing having an inner ring and an outer ring, the outer ring of the second rolling-element bearing contacting the second annular surface and the inner ring of the second rolling-element bearing contacting the second shoulder.
15. The actuator according to claim 14, wherein the first rolling-element bearing and the second rolling-element bearing have a negative clearance.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
DETAILED DESCRIPTION
[0013]
[0014] In an installed state the actuator is part of an operating table or a treatment chair and can be used to produce a longitudinal or a lateral tilting of the operating table or of the treatment chair. Assembled as disclosed, the threaded spindle 14 and the nuts are self-locking. There is no additional brake for braking the threaded spindle 14. The pitch of the thread of the threaded spindle 14 is relatively low. Since the threaded spindle 14 is self-locking, a clearance of a drive of the actuator need not be considered for monitoring the axial clearance of the actuator.
[0015] An alternative exemplary embodiment is depicted in
[0016]
[0017] During the manufacture of the actuator, the nut 10a has an internal thread that, before the threaded spindle 14a has been screwed into the nut 10a, is narrower than the thread of the threaded spindle 14a. The threaded spindle 14a has a trapezoidal thread, and the nut 10a has a rectangular thread. When the threaded spindle 14a is screwed into the nut 10a for the first time, the thread of the nut is newly grooved, i.e., widened, which has the result that an axial clearance of the screwed-in threaded spindle is minimal relative to the nut.
[0018] When assembled, the actuator includes a first component 24a including a partial region of an internal thread, which first component 24a exerts a force on the threaded spindle 14a perpendicular to an axis of rotation 26a of the threaded spindle 14a. The force is generated by a spring element 28a of the actuator, which spring element 28a is configured as a compression spring; the spring element 28a abuts on the component 24a. In addition, the actuator includes a second component 30a including a partial region of an internal thread, which second component 32a exerts a force on the threaded spindle 14a perpendicular to the axis of rotation of the threaded spindle 14a. The component 30a is disposed displaced in the axial direction, i.e., along the axis of rotation, with respect to the component 24a.
[0019] Representative, non-limiting examples of the present invention were described above in detail with reference to the attached drawings. This detailed description is merely intended to teach a person of skill in the art further details for practicing preferred aspects of the present teachings and is not intended to limit the scope of the invention. Furthermore, each of the additional features and teachings disclosed above may be utilized separately or in conjunction with other features and teachings to provide improved actuators.
[0020] Moreover, combinations of features and steps disclosed in the above detailed description may not be necessary to practice the invention in the broadest sense, and are instead taught merely to particularly describe representative examples of the invention. Furthermore, various features of the above-described representative examples, as well as the various independent and dependent claims below, may be combined in ways that are not specifically and explicitly enumerated in order to provide additional useful embodiments of the present teachings.
[0021] All features disclosed in the description and/or the claims are intended to be disclosed separately and independently from each other for the purpose of original written disclosure, as well as for the purpose of restricting the claimed subject matter, independent of the compositions of the features in the embodiments and/or the claims. In addition, all value ranges or indications of groups of entities are intended to disclose every possible intermediate value or intermediate entity for the purpose of original written disclosure, as well as for the purpose of restricting the claimed subject matter.
REFERENCE NUMBER LIST
[0022] 10 Nut [0023] 12 Nut [0024] 14 Threaded spindle [0025] 16 Rolling-element bearing [0026] 18 Rolling-element bearing [0027] 20 Clamp coupling [0028] 22 Internal thread [0029] 24 Component [0030] 26 Axis of rotation [0031] 28 Spring element [0032] 30 Component [0033] 32 Housing [0034] 34 Part