MAGNETIC BASE
20200361073 ยท 2020-11-19
Assignee
Inventors
- Stefan Scherrenbacher (Waldstetten, DE)
- Sergej Denzel (Schwaebisch Gmuend, DE)
- Gabriel Huaylinos Dolderer (Schwaebisch Gmuend, DE)
Cpc classification
Y10T408/554
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
B25H1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A magnetic base for an electric machine tool, in particular for a magnetic core drilling machine, having a body in which is accommodated at least one first permanent magnet, the magnetic force of which combines with the magnetic force of at least one second permanent magnet to form a resultant holding force, wherein the at least one second permanent magnet is supported in the body such that it can rotate about a rotation axis through an angle of rotation between a first position in which the resultant holding force of the magnetic base is maximized and a second position in which the resultant holding force of the magnetic base is minimized, and having a controller for rotating the second permanent magnet between the first position and the second position.
Claims
1. A magnetic base for an electric machine tool, in particular for a magnetic core drilling machine, the magnetic base comprising: a body in which is accommodated at least one first permanent magnet, a magnetic force of which combines with a magnetic force of at least one second permanent magnet to form a resultant holding force, wherein the at least one second permanent magnet is supported in the body such that it rotates about a rotation axis through an angle of rotation between a first position in which the resultant holding force of the magnetic base is maximized and a second position in which the resultant holding force of the magnetic base is minimized; and a controller for rotating the second permanent magnet between the first position and the second position, the controller being supported such that it pivots about a pivot axis through a pivot angle between a first end position in which the second permanent magnet is located in the first position and a second end position in which the second permanent magnet is located in the second position; and a transmission configured such that a ratio between the pivot angle of the controller and the angle of rotation of the second permanent magnet is between 1:3.6 and 1:1.5 or is 1:2.4, the transmission being arranged between the controller and the second permanent magnet.
2. The magnetic base according to claim 1, wherein the pivot angle between the first end position and the second end position is between 50 and 120 or is 70.
3. The magnetic base according to claim 1, wherein the transmission has gear teeth whose gear ratio is constant.
4. The magnetic base according to claim 3, wherein the gear teeth are composed of a first gear carrier and of a second gear carrier.
5. The magnetic base according to claim 4, wherein the first gear carrier, which is connected in a rotationally fixed manner to the controller, is designed as a segment of a circle whose angle corresponds essentially to the angle between the first end position and the second end position of the pivot angle.
6. The magnetic base according to claim 4, wherein the second gear carrier is circular.
7. The magnetic base according to claim 4, wherein a number of teeth of the second gear carrier is between 4 and 8, or is 5.
8. The magnetic base according to claim 1, wherein a spring element preloading the second permanent magnet into the first position is arranged between the transmission and the body.
9. The magnetic base according to claim 8, wherein the spring element implemented as a torsion spring.
10. The magnetic base according to claim 1, wherein at least one stop is associated with the body for limiting the pivoting of the controller.
11. The magnetic base according to claim 10, wherein the stop directly limits the motion of the transmission.
12. The magnetic base according to claim 10, wherein the stop is arranged in an interior of the body and limits the motion of the first gear carrier.
13. The magnetic base according to claim 1, wherein the location of the controller in the first end position and/or in the second end position is defined by a detent connection between the body and the controller.
14. The magnetic base according to claim 13, wherein at least one first detent seat that defines the first end position of the controller is arranged in the body.
15. The magnetic base according to claim 13, wherein a detent projection that has at least one guide bevel is arranged on the controller.
16. The magnetic base according to claim 1, wherein the controller is designed as a control lever.
17. The magnetic base according to claim 16, wherein the control lever is adapted to be tilted against a force of a return element about a tilt axis that is oriented substantially perpendicularly to its pivot axis.
18. The magnetic base according to claim 14, wherein a second detent seat that defines an intermediate position in which the resultant holding force is between the minimum holding force and the maximum holding force is implemented between the first end position and the second end position.
19. The magnetic base according to claim 1, wherein a force indicator that makes it possible to read out the resultant holding force is arranged on an end face of the body facing away from the controller.
20. The magnetic base according to claim 19, wherein the force indicator is connected in a rotationally fixed manner to the second permanent magnet.
21. The magnetic base according to claim 1, wherein the second permanent magnet is embedded in an essentially cylindrical casing that is rotatably mounted in the body.
22. The magnetic base according to claim 1, wherein a switching element for switching a switch that is connected to the magnetic base is associated with the second permanent magnet.
23. The magnetic base according to claim 22, wherein switching element is designed as a switching ball embedded in the casing.
24. The magnetic base according to claim 1, wherein a plurality of the at least one first permanent magnet is provided, and wherein the plurality of first permanent magnets are combined into a first subgroup and into a second subgroup, which are each accommodated in the body so as to be spatially separated from one another.
25. The magnetic base according to claim 1, wherein an elastic pressure element, which engages in an opening provided on the transmission in the first end position and/or in the second end position of the controller, is accommodated in the body.
26. An electric machine tool, in particular magnetic core drilling machine, comprising a magnetic base according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus, are not limitive of the present invention, and wherein:
[0033]
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DETAILED DESCRIPTION
[0045]
[0046] The transmission 12, which is mounted in the magnetic base 1, has gear teeth 13 whose gear ratio is constant. The gear teeth 13 in this design are composed of a first gear carrier 14 and of a second gear carrier 15, wherein the first gear carrier 14 is connected in a rotationally fixed manner to the axis of rotation 16 of the controller 9. While the second gear carrier 15 is circular in design, the first gear carrier 14 is designed as a segment of a circle whose angle corresponds essentially to the pivot angle of the controller 9 in order to be able to achieve the most compact possible construction. In the exemplary embodiment shown, the second gear carrier 15 has a total of 5 teeth. To facilitate the motion of the second permanent magnets 6, which are rotatably mounted in the body 2, from the second position into the first position, a spring element 17 that is implemented as a torsion spring 18 is arranged between the transmission 12 and the body 2 in order to preload the second permanent magnet 6 into the first position. To limit the rotation of the controller 9, stops 19 that are implemented in the interior of the body 2 and that limit the motion of the first gear carrier 14 are associated with the body 2.
[0047] The location of the controller 9 can be secured in the first end position 10 and/or in the second end position 11 by a detent connection between the body 2 and the controller 9. For this purpose, a first detent seat 20 that defines the first end position 10 of the controller 9 is implemented on the body 2. Furthermore, in the exemplary embodiment shown, a second detent seat 21 that defines an intermediate position in which the resultant holding force is between the maximum holding force and the minimum holding force is also implemented between the first end position 10 and the second end position 11. In this design, a detent projection 22 that is implemented on the controller 9 can engage these detent seats 20, 21. Furthermore, a guide bevel 23 is implemented on the detent projection 22 that facilitates engagement of the detent projection 22 in the detent seats 20, 21, in a manner similar to the lock tongue of a closing door.
[0048] In the exemplary embodiment shown, the controller 9 is designed as a control lever 24 that can be tilted against the force of a return element 25 about a tilt axis 26 that is oriented perpendicularly to its pivot axis 16.
[0049] It can also be seen in
[0050] The sectional view shown in
[0051]
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[0053] It is made evident from the perspective view shown in
[0054]
[0055]
[0056] A detail view of a part of the controller 9 of the magnetic base 1 is shown in
[0057]
[0058] The second gear carrier 15, which is shown in
[0059] The operation of the magnetic base 1 is explained once again below. Starting from the situation shown in
[0060] In the first position of the second permanent magnets 6, the switching ball 28 implemented in the casing 7 is located at the top of the body 2 facing away from the workpiece to be processed and emerges from the body. By this means it is possible to switch on a switch of an electric machine tool connected to the magnetic base 1, for example. This has the advantage, in particular, that the electric machine tool can only be switched on by the user once the magnetic base 1 is in the position in which the resultant holding force is maximized, for example. This likewise has a beneficial effect on operating safety.
[0061] When the user wishes to release the magnetic base 1 from the workpiece again, he only needs to disengage the control lever 24 from the first detent seat 20 by tilting the lever in opposition to the force of the return element 25 and then pivoting it about the pivot axis 16. When the second permanent magnet 6 is rotated about the axis of rotation 8, this also rotates the switching ball 28 implemented on the casing 7, which then results in switch-off of a switch of an electric machine tool connected to the magnetic base 1.
[0062] The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are to be included within the scope of the following claims.