Method Tool And Method Of Operating A Machine Tool
20200038974 · 2020-02-06
Inventors
Cpc classification
B23Q11/1015
PERFORMING OPERATIONS; TRANSPORTING
B23Q11/1084
PERFORMING OPERATIONS; TRANSPORTING
B23Q7/047
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23C9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a machine tool (1), in particular a dental milling machine or mill-turning machine, comprising a spindle (10) for receiving a tool and a working arm (12) for receiving a workpiece and comprising at least one nozzle (14a) attached to the spindle (10), in particular with its outlet direction (R) substantially parallel to the axis of rotation (A) of the spindle (10), characterized in that a deflecting body (16) is attached to the spindle (10) or clamped therein, said deflecting body extending in particular at least partially in front of the nozzle (14a). Further, the invention relates to a method of operating the machine tool (1).
Claims
1. A machine tool (1) comprising a spindle for receiving a tool, a working arm for receiving a workpiece, and at least one nozzle attached to the spindle, wherein a deflecting body is attached to the spindle or clamped therein, said deflecting body extending at least partially in front of the at least one nozzle.
2. The machine tool as claimed in claim 1, wherein at least two nozzles are attached to the spindle, said at least two nozzles each having outlet directions (R) that point to one another obliquely and point towards the axis of rotation (A) of the spindle.
3. The machine tool as claimed in claim 1, wherein the deflecting body is mounted pivotably, wherein the deflecting body deflects cleaning liquid escaping from the at least one nozzle, and wherein the deflecting body acts as a deflector and deflects cleaning liquid impinging on said deflecting body upon rotation at least partially in the direction of rotation.
4. The machine tool as claimed in claim 1, wherein a plurality of nozzles is arranged circularly around or at the spindle and wherein outflow directions of the plurality of nozzles point towards the deflecting body.
5. The machine tool as claimed in claim 1, wherein the spindle is connected non-rotatably with a spindle motor which spindle motor is received in a spindle housing which spindle housing is substantially frusto-conical, wherein the at least one nozzle is configured at the front surface of the spindle housing.
6. The machine tool as claimed in claim 1, wherein the deflecting body comprises grooves which extend substantially parallel to an axis of rotation (A) of the spindle, and wherein the deflecting body comprises at least one baffle having a normal extending substantially in an outlet direction (R) of the at least one nozzle, wherein the baffle acts atomizingly with regard to impinging spray lets of cleaning liquid.
7. The machine tool as claimed in claim 6, wherein the baffle is configured at an upper end of the deflecting body and points towards a bottom end of the deflecting body when the spray jets of the cleaning liquid are directed towards a top end of the deflecting body.
8. The machine tool as claimed in claim 1, wherein the machine tool comprises a control system to clean the machine tool, said control system configured to turn on a cleaning process when the spindle is equipped with the deflecting body, in which cleaning process the at least one nozzle streams cleaning liquid out towards the deflecting body and wherein the spindle motor is turned on at least partially to rotate the spindle.
9. The machine tool as claimed in claim 1, wherein the deflecting body comprises a shaft which is configured for clamping into the spindle (10).
10. The machine tool as claimed in claim 1, wherein the machine tool (1) comprises a working arm deflecting body having a baffle, said baffle may be moved in front of the at least one nozzle of the spindle (10) by the working arm, said working arm deflecting body being movable in front of the at least one nozzles with regard to a position of height of the at least one nozzle.
11. The machine tool as claimed in claim 10, wherein the working arm deflecting body fits around the spindle deflecting body of the spindle and extends at least partially around the spindle deflecting body in the operating position.
12. The machine tool as claimed in claim 10, wherein the working arm deflecting body is movable with regard to a tilt (b) by the working arm and applies different floor areas of a milling chamber of the machine tool with reflected cleaning jets via the tilt.
13. The machine tool as claimed in claim 10, wherein the working arm deflecting body comprises an angled shaft which is configured to be received in a chuck of the working arm.
14. The machine tool as claimed in claim 1, wherein at the spindle deflecting body and/or the working arm deflecting body, baffles are configured such that reflected cleaning jets may impinge upon any desired areas of a milling chamber of the machine tool configured as a milling machine or mill-turning machine.
15. A method of operating a machine tool (1) comprising the steps of: providing (S1) a spindle for receiving a tool and a working arm for receiving a workpiece; providing (S2) at least one nozzle which nozzle is attached to the spindle having an outlet direction (R) substantially parallel to an axis of rotation (A) of the spindle; wherein providing (S3) a deflecting body which is attached to the spindle or clamped therein and which extends at least partially in front of the nozzle (14a); and applying (S4) the deflecting body with a fluid escaping from the at least one nozzle.
16. The machine tool as claimed in claim 1, wherein the machine tool is a dental milling machine or mill-turning machine, wherein the at least one nozzle attached to the spindle with an outlet direction (R) of the at least one nozzle substantially parallel to an axis of rotation (A) of the spindle.
17. The method of operating a machine tool according to claim 15, wherein the machine tool is a dental milling machine or mill-turning machine.
Description
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033] In the Figures of the drawings the same reference numerals refer to the same elements, parts or components, or elements, parts or components having the same function unless otherwise stated.
[0034]
[0035] Preferably, the machine tool 1 is configured by a dental milling machine. Alternatively, the machine tool 1 may be configured e.g. by a mill-turning machine. The machine tool 1 comprises a spindle 10. The spindle 10 is configured for receiving a tool. In addition, the machine tool 1 comprises a working arm 12. The working arm 12 is configured for receiving a workpiece.
[0036] In addition, the machine tool 1 comprises a plurality of nozzles 14a, 14b, 14c, 14d, 14e and preferably a further nozzle (which is not illustrated in
[0037] Alternatively, the deflecting body 16 may be locked in place with the spindle 10, for instance. As a further alternative, the outlet directions R of the nozzles 14a-14e may point to one another obliquely and in particular point to the axis of rotation A of the spindle 10.
[0038] The deflecting body 16 is mounted pivotably and is configured such that it deflects cleaning liquid escaping from the nozzles 14a-14e. In this connection, the deflecting body 16 acts as a deflector. The cleaning liquid which impinges upon it when it is rotated is thus deflected at least partially in the direction of its rotation.
[0039] The plurality of nozzles 14a-14e is arranged preferably circularly around the spindle 10. Alternatively, the number of nozzles 14a-14e can vary or else the nozzles may be arranged in another suitable manner at the spindle 10 relative to the deflecting body 16, as for instance in a triangular, square, pentagonal or hexagonal arrangement, wherein the nozzles are arranged at respective corner points of the polygons.
[0040] The spindle 10 is connected non-rotatably with a spindle motor 18. The spindle motor 18 is received in a spindle housing 20. The spindle housing 20 is configured substantially frusto-conically, wherein the nozzles 14a-14e are configured at the front surface 22 of the spindle housing 20.
[0041] The deflecting body 16 comprises grooves 24a, 24b, 24c distributed around its circumferential surface, said grooves extending substantially parallel to the axis of rotation A of the spindle 10.
[0042] The deflecting body 16 is preferably configured substantially cylindrically. Alternatively, the deflecting body 16 may have e.g. a cornered geometry. The grooves 24a, 24b, 24c on the surface of the deflecting body 16 comprise preferably a semi-cylindrical shape. Alternatively, the grooves 24a, 24b, 24c may have another suitable shape or indentation in the surface of the deflecting body 16.
[0043] The deflecting body 16 comprises a baffle 26 whose normal extends substantially in the outlet direction R of the nozzles 14a-14e. Thus, the baffle 26 acts atomizingly on impinging jets of the cleaning liquid.
[0044] The baffle 26 is preferably configured at the end 28, in particular at the upper end of the deflecting body 16. Thus, a baffle characteristic of the baffle 26 is oriented such that spray jets of the cleaning liquid impinging upon the baffle 26 are reflected towards the bottom.
[0045] In addition, the machine tool 1 comprises a control system 30 to clean the machine tool. The control system 30 may be activated semi-automatically or fully automatically when the spindle 10 is equipped with the deflecting body 16. For instance, the spindle may be equipped with the deflecting body 16 semi-automatically, that is to say manually, or the deflecting body 16 may be arranged on the spindle 10 fully automatically by means of a suitable gripping mechanism.
[0046] During the cleaning process, the nozzles 14a-14e let cleaning liquid stream out to the deflecting body 16. The spindle motor 18 is controlled by the control system 30 during the cleaning process such that the spindle 10 rotates during the cleaning process and the deflecting body 16 sprays cleaning liquid into the work chamber of the machine tool 1 as a result of the rotation.
[0047] In addition, the deflecting body 16 comprises a shaft 16a which may be clamped into the spindle.
[0048]
[0049]
[0050] Thus, the working arm deflecting body 32 fits around the spindle deflecting body 16 of the spindle 10 and extends partially around the spindle deflecting body 16 in the operating position.
[0051] The tilt b of the working arm deflecting body 32 is movable by means of the working arm 12 and different floor areas of a milling chamber of the milling machine may be impinged upon with reflected cleaning jets via the tilt. The working arm deflecting body 32 comprises an angled shaft 32a which may be received in a chuck 12a of the working arm 12.
[0052] At the spindle deflecting body 16 and the working arm deflecting body 32 the baffles are configured such that reflected cleaning jets may impinge upon any desired areas of the milling chamber of the milling machine.
[0053]
[0054] The machine tool 1 comprises the working arm deflecting body 32. It comprises the baffle 26 which may be moved in front of the nozzles (not illustrated in
[0055]
[0056]
[0057] The method comprises providing S1 a spindle for receiving a tool and a working arm for receiving a workpiece. Further, the method comprises providing S2 at least one nozzle which is attached to the spindle, in particular with its outlet direction substantially parallel to the axis of rotation of the spindle. In addition, the method comprises providing S3 a deflecting body which is attached to the spindle or clamped therein and which extends in particular at least partially in front of the nozzle. Additionally, the method comprises impinging upon the deflecting body with a fluid escaping from the at least one nozzle.
[0058] Although the present invention has been described above with regard to preferred exemplary embodiments, it is not limited thereto but may be modified in a variety of ways. In particular, the invention may be changed or modified in various ways without leaving the scope of the invention.
[0059] For instance, a shape, dimension and/or structure of the components of the machine tool may be changed.