LASER PROCESSING DEVICE FOR MAKING METROLOGICAL SCALE
20210039196 ยท 2021-02-11
Inventors
Cpc classification
B23K26/082
PERFORMING OPERATIONS; TRANSPORTING
B23K26/062
PERFORMING OPERATIONS; TRANSPORTING
B23K2103/08
PERFORMING OPERATIONS; TRANSPORTING
B23K26/0846
PERFORMING OPERATIONS; TRANSPORTING
B23K26/364
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K26/062
PERFORMING OPERATIONS; TRANSPORTING
B23K26/082
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A laser processing device for making a metrological scale includes a laser unit, a motion platform, and a control unit. The laser unit is configured to output a laser beam. The motion platform bears the laser unit. The control unit is electrically connected to the laser unit and the motion platform, to control the motion platform to move relative to the workpiece and trigger the laser unit to output the laser beam at a suitable location, so that the workpiece is processed with a plurality of scale lines.
Claims
1. A laser processing device for making a metrological scale, adapted to process a workpiece, wherein the laser processing device comprises: a laser unit, configured to output a laser beam; a motion platform, bearing the laser unit; and a control unit, electrically connected to the laser unit and the motion platform, to control the motion platform to move relative to the workpiece and trigger the laser unit to output the laser beam at a suitable location, so that the workpiece is processed with a plurality of scale lines.
2. The laser processing device for making a metrological scale according to claim 1, wherein the laser processing device has a processing area, the workpiece is a strip, and the laser processing device further comprises: a conveyor wheel set, electrically connected to the control unit for conveying the strip to pass through the processing area, so that a segment of the strip located in the processing area is processed with the scale lines.
3. The laser processing device for making a metrological scale according to claim 1, wherein the laser beam forms the scale lines in a direct writing manner.
4. The laser processing device for making a metrological scale according to claim 2, wherein the laser beam forms the scale lines in a direct writing manner.
5. The laser processing device for making a metrological scale according to claim 1, wherein the laser unit outputs the laser beam in a scanning manner to form one scale line during each scan, and moves to a location of a next scale line through the motion platform.
6. The laser processing device for making a metrological scale according to claim 2, wherein the laser unit outputs the laser beam in a scanning manner to form one scale line during each scan, and moves to a location of a next scale line through the motion platform.
7. The laser processing device for making a metrological scale according to claim 1, further comprising a mask disposed in the processing area, so that the workpiece is processed by a portion of the laser beam passing through the mask.
8. The laser processing device for making a metrological scale according to claim 7, wherein the laser beam is a deep ultraviolet laser beam.
9. The laser processing device for making a metrological scale according to claim 2, further comprising a mask disposed in the processing area, so that the workpiece is processed by a portion of the laser beam passing through the mask.
10. The laser processing device for making a metrological scale according to claim 9, wherein the laser beam is a deep ultraviolet laser beam.
11. The laser processing device for making a metrological scale according to claim 1, further comprising a visual alignment module electrically connected to the control unit, to obtain an image of the processing area for the control unit to align the next segment.
12. The laser processing device for making a metrological scale according to claim 2, further comprising a visual alignment module electrically connected to the control unit, to obtain an image of the processing area for the control unit to align the next segment.
13. The laser processing device for making a metrological scale according to claim 2, further comprising a suction device electrically connected to the control unit, to fasten the segment of the strip by suction.
14. The laser processing device for making a metrological scale according to claim 2, further comprising a double-sided laminating wheel set electrically connected to the control unit, wherein the conveyor wheel set conveys a processed segment of the strip out of the processing area, and the double-sided laminating wheel set separately applies a laminar film on a side surface and an opposite side surface that have the scale lines and that are on the segment of the strip out of the processing area.
15. The laser processing device for making a metrological scale according to claim 14, wherein the laminar film on the side surface having the scale lines is a protection film.
16. The laser processing device for making a metrological scale according to claim 14, wherein the laminar film on the opposite side surface having the scale lines is an adhesive film.
17. The laser processing device for making a metrological scale according to claim 1, wherein the scale lines are in a parallel alignment.
18. The laser processing device for making a metrological scale according to claim 2, wherein the scale lines are in a parallel alignment.
19. The laser processing device for making a metrological scale according to claim 1, wherein the scale lines are in a radial alignment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022]
[0023] An example in which the workpiece 200 is a strip is used herein. The laser processing device 100 further includes a conveyor wheel set 140 formed by a plurality of scroll wheels, to convey the strip-shaped workpiece 200. The conveyor wheel set 140 is electrically connected to the control unit 130, to be controlled by the control unit 130 to move forward or backward. Therefore, the strip-shaped workpiece 200 can be conveyed to pass through the processing area A, so that a segment S of the strip-shaped workpiece 200 located in the processing area A can be processed by the laser beam L.
[0024] The processing herein refers to forming a plurality of scale lines 210 on the workpiece 200.
[0025] In an embodiment, the laser beam L forms the scale lines 210 in a direct writing manner. For example, as shown in
[0026] In an embodiment, the laser unit 110 outputs the laser beam L in a scanning manner to form one scale line 210 during each scan, and moves to a location of a next scale line 210 through the motion platform 120. Specifically, as shown in
[0027] In some embodiments, as shown in
[0028] In some embodiments, after one scale line 210 is processed, the visual alignment module 150 may be further used to align the laser unit 110 with a location of the next scale line 210 to be processed, but is not limited to connect the neighboring two segments S.
[0029] In some embodiments, as shown in
[0030] In some embodiments, as shown in
[0031]
[0032]
[0033] In some embodiments, the laser processing device 100 further includes a cleaning device (not shown) arranged behind the processing area, to clean (such as ultrasound washing and solvent washing) and dry the processed area. The workpiece 200 is rolled and is adhered with the protection film 300 and the adhesive film 400 by the double-sided laminating wheel set 170 after cleaning.
[0034] In some embodiments, the visual alignment module 150 checks the processed area, to detect the yield of the processed area and label an area with poor yield through the laser unit 110.
[0035] In some embodiments, the laser unit 110 may pre-polish the workpiece 200 before the foregoing laser processing.
[0036] Based on the above, the embodiments of the present invention provide a laser processing device 100 for making a metrological scale, to accurately process the workpieces 200 and 200.