Drive unit
10751847 ยท 2020-08-25
Assignee
Inventors
Cpc classification
International classification
Abstract
A drive unit with a spindle drive and a spindle-drive drive motor, which comprises a rotor, is characterized in that a spindle of the spindle drive is arranged inside the rotor acting as a spindle nut and comprising a hollow shaft. As a result, a particularly compact construction for the drive unit can be realized, which can serve, in particular, as a linear drive of tool sleeve.
Claims
1. A drive unit comprises a spindle drive and a spindle-drive drive motor, wherein the spindle-drive drive motor comprises a rotor, wherein a spindle of the spindle drive is arranged inside the rotor acting as a spindle nut and comprising a hollow shaft, and wherein the spindle is guided in an anti-twist manner in a housing of the drive unit, and wherein the spindle provides an anti-twist device comprising several guide pins connected at one longitudinal-axial end to a main spindle body, which are guided in an axially movable manner in complementary guide openings of the housing; wherein the spindle comprises at least one structural element, configured to interact with the spindle nut, so as to transform a rotary motion of the spindle nut into a linear movement of the spindle.
2. The drive unit according to claim 1, wherein the spindle drive is constituted as a ball-screw drive or as a roller-screw drive.
3. The drive unit according to claim 1, wherein inside the spindle comprising a hollow shaft, a tool spindle is mounted in a rotatable and axially fixed manner.
4. The drive unit according to claim 3, wherein at the end, the tool spindle comprises a tool-retaining head for a drilling tool.
5. The drive unit according to claim 1, further comprising a tool-spindle drive motor.
6. The drive unit according to claim 5, wherein the tool-spindle drive motor comprises a rotor comprising a hollow shaft, wherein a coupling portion of the tool spindle is retained in a rotationally rigid and axially displaceable manner inside the rotor of the tool-spindle drive motor.
7. The drive unit according to claim 5, wherein the spindle-drive drive motor and/or the tool-spindle drive motor is constituted as a servomotor.
8. The drive unit according to claim 1, wherein the housing comprises a first housing part, which constitutes an internal volume, wherein a second housing part, to which the spindle-drive drive motor is attached in a rotationally rigid manner, is arranged inside the internal volume of the first housing part in a rotationally rigid and axially fixed manner.
9. The drive unit according to claim 1, further comprising a tool-spindle drive motor, wherein the housing comprises a first housing part, which constitutes an internal volume, wherein a second housing part, to which the tool-spindle drive motor is attached in a rotationally rigid manner, is arranged inside the internal volume of the first housing part in a rotationally rigid and axially fixed manner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention is explained in greater detail on the basis of an exemplary embodiment presented in the drawings. The drawings show:
(2)
DETAILED DESCRIPTION OF THE INVENTION
(3) The drive unit illustrated in the drawings comprises a multi-part housing 1, within which a spindle drive and an electric spindle-drive drive motor 2 is arranged as a servomotor. The spindle-drive drive motor 2 comprises a stator 3 retained both in a rotationally rigid manner and also in an axially immovable manner within the housing 1 and a rotor 4 mounted in a rotatable manner inside the stator 3. The spindle-drive drive motor 2 is accordingly embodied as a so-called internal rotor. The rotor 4 comprises a hollow shaft 5, of which the length (extension in longitudinal-axial direction) is significantly greater than the length of the stator 3. The hollow shaft 5 is therefore additionally mounted inside the housing in a rotatable manner via roller bearings 24. Sealing elements in the form of radial-shaft sealing rings 25 seal this rotary bearing off from the environment here. The hollow shaft 5 serves as a spindle nut of the spindle drive constituted as a ball-screw drive. For this purpose, one or more ball bearings (not illustrated) are borne in a known manner in the hollow shaft 5, which roll in a spiral groove (not illustrated) of a spindle 6 of the spindle drive, wherein, dependent upon the pitch of the spiral groove, a rotary movement of the hollow shaft 5 or respectively of the rotor 4 of the spindle-drive drive motor 2 is transformed into a linear movement of the spindle 6. In this context, in order to ensure that the rotary movement of the rotor 4 is transformed exclusively into a linear movement of the spindle 6, the latter comprises an anti-twist device, which comprises several guide pins 8 connected at one longitudinal-axial end to a main spindle body 7, which are guided in an axially movable manner in complementary guide openings 9 of the housing 1. The guiding of the guide pins 8 in the guide openings 9 is accordingly sealed via sealing elements in the form of radial-shaft sealing rings 25.
(4) The spindle 6 (or respectively the main spindle body 7) of the spindle drive is similarly constituted as a hollow shaft. Inside the spindle 6, a tool spindle 10, which forms a tool-retaining head 11 at one longitudinal-axial end, is mounted in a rotatable manner via roller bearings 24. This rotary bearing is also sealed off from the environment by means of sealing elements in the form of radial-shaft sealing rings 25. In the present exemplary embodiment, the tool-retaining head 11 is provided for retaining a drilling tool 12. The tool spindle 10 projects from the spindle 6 of the spindle drive at the distal end with reference to the tool-retaining head 11, with the tool-retaining head 11 and also with a coupling portion 13. This coupling portion 13 of the tool spindle 10, which can comprise a non-round and, for example, rectangular, pentagonal or hexagonal cross-section, is mounted in a longitudinally-axially movable, and at the same time anti-twist manner, inside a rotor 15 of an (electrical) tool-spindle drive motor 14 similarly constituted as a servomotor. Alongside the rotor 15, this tool-spindle drive motor 14 also comprises a stator 16, which is mounted in a rotationally rigid and axially immovable manner inside the housing 1. The rotor 15 of the tool-spindle drive motor 14 projects with one portion beyond the stator 16 and is mounted within the housing in a rotatable manner in this portion via a roller bearing 24.
(5) In the case of an activation of the tool-spindle drive motor 14, the tool spindle 10 and accordingly the drilling tool 12 are driven rotationally. Independently of this rotational drive of the tool spindle 10 or respectively of the drilling tool 12, a feed motion for the tool spindle 10 and therefore for the drilling tool 12 can be adjusted through a corresponding activation of the spindle-drive drive motor 2. The relative movement resulting from the feed motion of the tool spindle 10 in combination with the stationary arrangement of the tool-spindle drive motor 14 within the housing 1 is made possible in this context by the longitudinal-axial mobility of the coupling portion 13 of the tool spindle 10 inside the rotor 15 of the tool-spindle drive motor 14 similarly constituted as a hollow shaft.
(6)
(7) The feed-motion space 18 is constituted at least partially inside a head part 20 of the housing 1, mounted to allow linear movement and tilting within limits inside a main part 19 of the housing 1. The exterior front end of this head part 20 serves primarily for the contact with the work piece to be processed (not illustrated), wherein a not-exactly-rectangular alignment of the contact surface of the work piece to be processed relative to the longitudinal axis 21 of the drive unit (which corresponds to the axes of rotation of the rotors 4, 15 of the two drive motors 2, 14 and the tool spindle 10) can be compensated. Through the integration of a circumferential sealing ring 22 in the exterior front end of the head part 20, the processing position of the work piece to be processed can be further sealed off from the environment.
(8) For an advantageous assembly and maintenance of the drive unit, it is provided that the main part 19 of the housing 1 constitutes an internal volume, which is (also) constituted to be open at the front end which is disposed distally with reference to the head part 20. Via the opening in this front end, an insert part 23 of the housing 1 can be inserted into the internal volume and can be fixed there, for example, via one or more screw connections, both in a rotationally rigid and also an axially immovable manner. Both the spindle-drive drive motor 2 and also the tool-spindle drive motor 14 is attached (in each case via the rotors 4, 15) to the insert part 23. This allows the two drive motors 2, 14, including the spindle 6 connected to the spindle-drive drive motor 2 and the tool spindle 10 connected to the tool-spindle drive motor 2, to be inserted into the main part 19 of the housing 1 and removed from the latter as a unit.
LIST OF REFERENCE NUMBERS
(9) 1 Housing
(10) 2 Spindle-drive drive motor
(11) 3 Stator of the spindle-drive drive motor
(12) 4 Rotor of the spindle-drive drive motor
(13) 5 Hollow shaft of the rotor of the spindle-drive drive motor
(14) 6 Spindle
(15) 7 Main spindle body
(16) 8 Guide pin
(17) 9 Guide opening
(18) 10 Tool spindle
(19) 11 Tool-retaining head
(20) 12 Drilling tool
(21) 13 Coupling portion of the tool spindle
(22) 14 Tool-spindle drive motor
(23) 15 Rotor of the tool-spindle drive motor
(24) 16 Stator of the tool-spindle drive motor
(25) 17 Tool opening of the housing
(26) 18 Feed-motion space
(27) 19 Main part of the housing
(28) 20 Head part of the housing
(29) 21 Longitudinal axis of the drive unit
(30) 22 Sealing ring
(31) 23 Insert part of the housing
(32) 24 Roller bearing
(33) 25 Radial-shaft sealing ring