DEVICE FOR PROCESSING THE BORDERS OF FLAT WORKPIECES
20220266407 · 2022-08-25
Inventors
- Johannes ZEHETHOFER (Seitenstetten, AT)
- Christoph LUEGER (Seitenstetten, AT)
- Franz HASELMAYR (Seitenstetten, AT)
Cpc classification
International classification
Abstract
In the case of a device for trimming plate-like workpieces, such as glass panels, a grinding ring that is rotated around a shaft by a drive is used. The grinding surfaces that act by ablation on the edges of the side of the workpiece are designed to move in the axial direction, so that during trimming, they can follow the edges of the workpiece. The grinding surfaces are automatically positioned on the edges that are to be trimmed of the workpiece, even if the edges do not lie in the prescribed target position. The grinding ring is mounted to float on its carrier via a hydrostatic bearing or a gas bearing.
Claims
1. Device for erosion-treating the edges on sides of flat workpieces with at least one grinding ring, which has grinding surfaces, wherein a carrier that can be driven in rotation around a shaft is provided for the grinding ring and wherein the grinding ring is coupled for rotation to the carrier, the grinding ring is arranged to move on the carrier in the direction of the shaft, wherein the grinding ring is mounted to float on the carrier and wherein the grinding ring is mounted to float on the carrier via a hydrostatic bearing or gas bearing.
2. The device according to claim 1, wherein the coupling has at least one pin as a driving pin and/or guide, which is fastened to the carrier and engages in a hole or recess in the grinding ring.
3. The device according to claim 2, wherein the pin is accommodated in the hole or recess with a slide guide.
4. The device according to claim 1, wherein the grinding surfaces are elastically springy in the direction of the shaft.
5. The device according to claim 1, wherein the grinding ring is loaded in an elastically springy manner in its starting position.
6. The device according to claim 1, wherein the grinding ring comprises two grinding ring parts and wherein the grinding surfaces are provided on the grinding ring parts.
7. The device according to claim 1, wherein the grinding surfaces are designed to be conical or concave.
8. The device according to claim 6, wherein the grinding ring parts are to be loaded on one another by springs.
9. The device according to claim 7, wherein the grinding ring parts are loaded by pneumatic or hydraulic springs.
10. The device according to claim 6, wherein the grinding ring parts are arranged to move on the carrier for the grinding ring in the direction of the shaft.
11. The device according to claim 6, wherein the grinding ring parts are to be loaded on one another on the carrier by springs in terms of a movement.
12. The device according to claim 1, wherein at least one line for feeding a liquid or gaseous medium is provided in the carrier and wherein line branches branch off from the line, which branches flow between the inside surface of the grinding ring and the outside surface of the carrier.
13. The device according to claim 1, wherein the grinding ring is coupled for rotation to the carrier.
14. The device according to claim 13, wherein the coupling comprises at least one pin that engages in a hole or recess in the grinding ring or the grinding ring parts, which pin is fastened to the carrier for the grinding ring.
15. The device according to claim 14, wherein the pin is accommodated in the grinding ring or the grinding ring parts with a slide guide.
16. The device according to claim 1, wherein springs that elastically load the grinding ring or the grinding ring parts into its/their starting position are provided on the carrier.
17. The device according to claim 1, wherein at least one annular space is provided, which space is bounded in places by a grinding ring part, and wherein the line for feeding the liquid or gaseous medium empties into the annular space.
18. The device according to claim 17, wherein a sleeve-like element that encompasses the carrier and that bounds the annular space is provided on at least one grinding ring part and wherein at least one opening is provided in the sleeve-like element, which opening is in the area of the annular space, when the grinding ring part is in the grinding ring part's starting position.
19. The device according to claim 1, wherein the grinding ring has a groove that has grinding surfaces and that is outward-facing.
20. The device according to claim 19, wherein the groove is trapezoidal or V-shaped.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Additional details and features as well as advantages of the invention follow from the description below of the embodiments that are partially diagrammatically depicted in the drawings. Here:
[0041]
[0042]
[0043]
[0044]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0045] The embodiment of a device 1 that is shown in
[0046] A line 14 for feeding liquid (feeding water) is provided in the carrier 12, so that the grinding ring parts 6 of the grinding ring 25 are mounted (to float) on the carrier 12 via a hydrostatic bearing. Instead of hydrostatic bearings for the grinding ring 25 or the grinding ring parts 6, gas (air) bearings can also be provided. In the case of gas bearings, a gas (e.g., air) is fed via the line 14.
[0047] It is also possible that fed liquid (water) exits via the gap 15 between the grinding ring parts 6 in the direction toward the workpiece 8 (the glass panel that is to be machined), so that the workpiece 8, e.g., a glass panel, is cooled with the liquid during the machining in order to trim edges 9 on its side 10.
[0048] The grinding ring parts 6 have grinding surfaces 7, which are curved in a conical or concave manner and act by ablation on the workpiece 8 (glass panel) that is to be machined when the device 1 is being used for trimming the edges 9 of a side 10.
[0049] The grinding ring parts 6 of the embodiment shown in
[0050] Since the grinding ring parts 6 are supported on the carrier 12 by springs 16, the grinding ring parts 6 can follow the path of the side 10 of the workpiece 8 (glass panel) that is to be machined, without special guide measures being necessary. The reason for this is that the grinding surfaces 7 of the grinding ring parts 6 are flexible in an elastically springy manner and are positioned under springy prestress on the edges 9 that are to be trimmed of the workpiece 8, such as a glass panel, even if the workpiece 8 deviates from the desired size, position, and/or shape.
[0051] In order to couple the grinding ring parts 6 to the carrier 12 for rotation, pins 18 that serve as driving pins and/or guide pins are provided for torque transfer, which pins are arranged on a flange 19 of the carrier 12 and grip with the slide guide through holes 20 in the gripping ring parts 6.
[0052] Shown in
[0053]
[0054] In
[0055] In
[0056] Also, in this case, the grinding surfaces 7 of the device 1 follow the edges 9 of the side 10 of the workpiece 8, wherein the grinding ring parts 6 move in the direction of the shaft 2 from their basic position (
[0057] In
[0058] Because of the springs 16 that act as reset elements, which springs act on the grinding ring parts 6 and elastically load the latter into their basic position shown in
[0059] In
[0060] The spring forces that move the grinding ring parts 6 into their action position and in addition press in an elastically springy manner on the edges 9 that are to be trimmed of the side 10 of the flat workpiece 8 (glass panel) are applied, in the embodiment shown in
[0061] Because of the liquid springs or the gas springs (the spaces 21 to which liquid or gas (air) is supplied), the embodiment that is shown in
[0062] In the embodiment, shown in
[0063] The grinding ring parts 6 of the embodiment shown in
[0064] In the embodiment shown in
[0065] Also, in the embodiment shown in
[0066] In the embodiment shown in
[0067] The grinding ring 25 of
[0068]
[0069] Within the framework of the invention, consideration is also given to an embodiment in which the grinding disk 25 with its grinding surfaces 7 is mounted to float on the carrier 12, without springs 16 or the liquid springs/gas springs provided in the embodiment of
[0070] Such an embodiment is shown by way of example in
[0071] The device 1, shown in
[0072] An arrangement of the grinding ring 25 that can be moved in the direction of the axis (of rotation) 2 is produced by the floating mount of the grinding ring 25 on the carrier 12, so that the latter can automatically follow the side 10 of the workpiece 8, even if the latter deviates from the target position, as is shown by the arrows in
[0073] The groove 5 of the grinding ring 25 can also be V-shaped—instead of trapezoidal as shown.
[0074] Grinding rings 25 with a trapezoidal groove 5 can be used for trimming the edges 9 and for machining (grinding and/or polishing) the lateral faces of the workpiece 8 that are oriented crosswise to the plane of the workpiece 8. In this case, the base of the groove 5 acts on the lateral face of the workpiece 8 in a machining manner, for example polishing.
[0075] Grinding rings 25 with a V-shaped groove 5 are used, for example, if only the edges 9 are to be erosion-treated (trimmed) on sides 10 of workpieces 8.
[0076] In summary, an embodiment of the invention can be described as follows:
[0077] In the case of a device 1 for trimming plate-like workpieces 8, such as glass panels, a grinding ring 25 that is rotated around a shaft 2 by a drive is used. The grinding surfaces 7 that act by ablation on the edges 9 of the side 10 of the workpiece 8 are designed to move in the axial direction, so that during trimming, they can follow the edges 9 of the workpiece 8. The grinding surfaces 7 are automatically positioned on the edges 9 that are to be trimmed of the workpiece 8, even if the edges 9 do not lie in the prescribed target position.