Parting Machine, Workpiece Positioning Device
20190039201 · 2019-02-07
Inventors
Cpc classification
B23D45/028
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/5412
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/623
PERFORMING OPERATIONS; TRANSPORTING
B23D45/024
PERFORMING OPERATIONS; TRANSPORTING
B24B41/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present disclosure relates to a cutting machine comprising a rotating cutting wheel for performing separating cuts in a workpiece, and also relates to a workpiece positioning device for such a cutting machine. The cutting machine comprises a cutting wheel and a drive motor for driving the cutting wheel, a clamping means for clamping the workpiece, means for mechanically positioning the workpiece along one or two translational directions and additionally about one or two rotation axes, and a lifting mechanism for setting the cutting wheel on the workpiece to perform separating cuts in the positioned workpiece using the cutting wheel.
Claims
1. A cutting machine for processing workpieces using a rotating cutting wheel, comprising: a cutting wheel and a drive motor for driving the cutting wheel, a work table for fixing a workpiece to be processed, the work table defining an xz-plane; a first displacement means for producing a relative displacement between the workpiece and the cutting wheel in a first direction in the xz-plane in order to position the workpiece for separating cuts with the cutting wheel in the first direction in the xz-plane relative to the cutting wheel; a workpiece positioning device including a clamping means for clamping the workpiece and a first mechanical rotating means for rotatably positioning the workpiece clamped in the clamping means about a first rotation axis prior to or between performing separating cuts; and a lifting mechanism for setting the cutting wheel on the workpiece in y-direction perpendicularly to the xz-plane for performing separating cuts in the workpiece using the cutting wheel.
2. The cutting machine as claimed in claim 1, wherein the workpiece positioning device comprises a second mechanical rotating means for rotatably positioning the workpiece clamped in the clamping device about a second rotation axis prior to or between performing separating cuts.
3. The cutting machine as claimed in claim 1, wherein the first rotation axis is perpendicular to the xz-plane and/or the second rotation axis is parallel to the xz-plane.
4. The cutting machine as claimed in claim 1, wherein the first and/or second mechanical rotating means allow the workpiece to be rotated by at least 90 about the first and second rotation axes, respectively.
5. The cutting machine as claimed in claim 1, further comprising a second displacement means for producing a relative displacement between the workpiece and the cutting wheel in a second direction in the xz-plane perpendicularly to the first direction in order to position the workpiece for separating cuts with the cutting wheel in the first and second directions in the xz-plane relative to the cutting wheel.
6. The cutting machine as claimed in claim 1, wherein the workpiece positioning device is releasably clampable to the work table.
7. The cutting machine as claimed in claim 1, wherein the workpiece positioning device comprises a stepping motor and a worm gear driven by the stepping motor, for rotatably positioning the workpiece clamped in the clamping device about the first and/or second rotation axes.
8. The cutting machine as claimed in claim 1, wherein the workpiece positioning device comprises a fixing plate and a rotary housing, wherein the fixing plate is releasably clampable to the work table and the rotary housing is mounted for rotation about the fixing plate such that for rotatably positioning the workpiece about the first rotation axis, the rotary housing is rotated about the fixing plate in particular together with the first and/or second stepping motor.
9. The cutting machine as claimed in claim 1, wherein the workpiece positioning device comprises supply lines which are routed so as to be flexible about the y-direction perpendicular to the xz-plane.
10. The cutting machine as claimed in claim 1, wherein the workpiece positioning device comprises a quick-change device which is adapted for fixing different clamping means to the workpiece positioning device.
11. The cutting machine as claimed in claim 1, comprising a machine housing which accommodates the cutting wheel, the work table, the workpiece positioning device, and/or the flexibly routed supply lines and defines a working space, the machine housing including a covering hood which closes the working space during the performing of the separating cuts and allows the user to access the workpiece positioning device and the workpiece prior to and after the performing of the separating cuts.
12. The cutting machine as claimed in claim 1, comprising a program controller which has control of the first and/or second rotating means integrated therein, such that the program controller automatically controls the relative displacement in the first and/or second directions and the rotation of the workpiece about the first and/or second rotation axes prior to and between separating cuts, such that a plurality of separating cuts at different positions in the xz-plane and with different rotational positions of the workpiece are successively controlled automatically.
13. The cutting machine as claimed in claim 1, comprising one or more manual control elements for manually driving the first and/or second displacement means and the first and/or second mechanical rotating means so as to be able to manually set desired separating cuts.
14. The cutting machine as claimed in claim 1, wherein, for programming the desired separating cuts, the starting position in the first and/or second directions in the xz-plane and with respect to the first and/or second rotational position of the workpiece for the respective separating cut is set manually using the one or more manual control elements, and is stored, and the associated separating path and optionally further separation parameters are programmed into the program controller as numerical values.
15. The cutting machine as claimed in claim 1, comprising a diameter measuring device for the cutting wheel, adapted to measure the diameter of the cutting wheel automatically or on user request between the separating cuts, and wherein the setting and separating paths for the separating cuts still to be performed after the measurement are automatically adjusted by the program controller on the basis of the measured diameter values.
16. A workpiece positioning device for being fixed to a work table of a cutting machine, comprising: fixing means for rigidly clamping the workpiece positioning device to the work table of the cutting machine; a clamping means clamping a workpiece; and a first mechanical rotating means for rotatably positioning the workpiece clamped in the clamping means about a first rotation axis prior to or between performing separating cuts in order to make the separating cuts in different rotational positions without manually re-clamping the workpiece.
17. The cutting machine for processing workpieces using a rotating cutting wheel, comprising: a cutting wheel and a drive motor for driving the cutting wheel; a clamping means for clamping the workpiece; means for mechanically positioning the workpiece along one or two translational directions and additionally about one or two rotation axes; and a lifting mechanism for setting the cutting wheel on the workpiece to perform separating cuts in the positioned workpiece using the cutting wheel.
Description
BRIEF DESCRIPTION OF THE FIGS.
[0044] In the drawings:
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DETAILED DESCRIPTION
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[0063] Referring to
[0064] In working space 14, a work table 32 is arranged, which is mounted for being displaceable in two dimensions in the xz-plane by xz displacement means 34, 36. The driving of the mechanical displacement of the work table 32 in the x-direction and in the z-direction and the setting of the cutting wheel 22 in the y-direction is automatically controlled by a program controller 42, although it is likewise possible to use a joystick 44 for manually setting starting positions for individual separating cuts. The joystick 44 can be used to manually move the work table 32 in the x- and z-directions. Numerical values can be entered via a touchscreen display 46, for example the desired cutting paths or cutting depths.
[0065] Prior to each separating cut, it is possible to measure the actual diameter of the cutting wheel 22, automatically or on user request, using a laser measuring device 48, for automatically factoring in, into the previously programmed separating cuts, the progressive wear of the cutting wheel 22 so as to be able to automatically compensate for the wear of the cutting wheel 22 between the individual separating cuts during a separation task that is being performed.
[0066] On work table 32, a workpiece positioning device 50 is clamped, which supports a quick-release plate 60 which in turn fixes the clamping means 70 for the workpiece 80 to be processed, by quick-release latching. Workpiece positioning device 50 comprises a first mechanical rotating means 52 which rotates the workpiece positioning device 50 about a vertical first rotation axis D, as symbolized by arrow 54. Furthermore, the workpiece positioning device 50 comprises a second mechanical rotating means 56 which rotates the clamping means 70 about a horizontal second rotation axis E which lies perpendicular to the first rotation axis D, symbolized by arrow 58.
[0067] Thus, the workpiece 80 clamped in clamping means 70 (
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[0069] Referring to
[0070] The second rotating means 56 (
[0071] Referring to
[0072] Referring to
[0073] The control of the first and second rotating means 52, 56 is integrated in the program controller 42 of cutting machine 10. The control panel 161 of cutting machine 10 comprises a joystick 44 for driving the work table 32 in xz-directions, and in addition thereto two rotary knobs 162, 164 which can be used to manually drive the first and second mechanical rotating means 52, 56. For example, a complex separation task such as that of the cam sleeve 80 in
[0074] The cutting machine according to the present disclosure can thus be referred to as a 5-axes cutting machine 10. Here, the linear axes x and z define the two-dimensional displacement of the work table 32, the y-axis defines the setting direction between the cutting wheel 22 and the workpiece 80, and the additional axes D and E define the two rotation axes about which the workpiece 80 is rotated in addition to the xz translation.
[0075] It will be apparent to those skilled in the art that the embodiments described above are only meant to be exemplary, and that the present disclosure is not limited thereto but can rather be varied in many ways without departing from the scope of the claims. Furthermore, all features that have been disclosed in conjunction with the cutting machine are considered to be disclosed in conjunction with the workpiece positioning device as well, and vice versa.
[0076] Furthermore, it will be apparent that irrespective of whether disclosed in the description, the claims, the figures, or otherwise, the features also individually define components of the present disclosure, even if they are described together with other features.