MARKING APPARATUS
20180292202 ยท 2018-10-11
Assignee
Inventors
Cpc classification
B25H7/045
PERFORMING OPERATIONS; TRANSPORTING
B44B7/00
PERFORMING OPERATIONS; TRANSPORTING
B23Q17/2414
PERFORMING OPERATIONS; TRANSPORTING
G03B21/26
PHYSICS
International classification
B44B7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A marking apparatus (1) having a presentation apparatus (9) for the optically guided alignment with a work site (5) on an object (3), wherein a digital model (2) of the object (3) is storable in a model memory and at least one mark (4) that corresponds to a work site (5) on the object (3) may be added to the digital model (2), wherein the location of the marking apparatus (1) with respect to the object (3) is determinable using a measuring apparatus.
Claims
1. A marking apparatus (1) comprising a processor connected to a model memory for storing a digital model (2) of an object (3), configured such that at least one mark (4) is addable to the model (2), a measuring apparatus configured to determine a location of the marking apparatus (1) with respect to the object (3), and a presentation apparatus (9) that is set up for an optically guided alignment of the marking apparatus (1) with a location (5) on the object (3) that corresponds to the mark (4) which is stored in the model.
2. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus (1) has a projector (8), with which a mark (4) is projectable onto the object (3) in a locationally correct manner.
3. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus (9) has a projector (8), with which a location reference (16) is projectable onto the object (3).
4. The marking apparatus (1) as claimed in claim 1, further comprising a capture apparatus (14) configured to capture a location reference (16), and the alignment of the marking apparatus (1) is determinable therefrom.
5. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus has a display in which at least one of the mark or the marking apparatus in the model is presented.
6. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus (9) comprises a display (10) in which the mark (4) is presentable in a locationally correct manner.
7. The marking apparatus (1) as claimed in claim 6, wherein the marke is presented as a superposed real image.
8. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus (9) has a display (10) with which a direction in which the marking apparatus (1) must be moved or pivoted to align it with the mark is displayable.
9. The marking apparatus (1) as claimed in claim 1, wherein the presentation apparatus (9) has four direction pointers (12) arranged in a cross shape.
10. The marking apparatus (1) as claimed in claim 1, wherein the marking apparatus (1) includes a camera for the image capturing of the object (3), and the presentation apparatus (9) has a display (10) in which at least one of the captured image of the object, information relating to the alignment of the marking apparatus (1), or a mark (4) is displayed.
11. The marking apparatus (1) as claimed in claim 1, further comprising a selection device (19) with which the mark (4) to be worked is selectable.
12. The marking apparatus (1) as claimed in claim 1, further comprising a display (10) in which the selected mark (4) is presented.
13. A tool for working on or machining an object, in particular a drill, milling machine, cutting machine, machine saw or grinder, having a marking apparatus as claimed in one of the preceding claims, in particular wherein a work direction of the tool coincides with an alignment of the marking apparatus.
14. A method for aligning a tool, comprising: providing a mark (4) in a digital model (2) of an object (3), performing a work step with the tool by a user (7) at a location (5) on the object (3) that corresponds to the mark (4), automatically ascertaining an alignment of the tool with respect to the object (3), and automatically instructing the user (7) based on the ascertained alignment and the digital model (2), to align a work direction of the tool with the location (5) on the object (3).
15. The method as claimed in claim 14, further comprising instructing the user (7) using the mark (4) that is projected onto the location (5) in an automatically locationally correct manner.
16. The method as claimed in claim 12, further comprising instructing the user (7) with automatically generated instructions to pivot the tool.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The invention will be explained in more detail below with reference to an exemplary embodiment with reference to the attached drawings.
[0037] In the figures:
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
[0046]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0047]
[0048] This model 3 can have been created for example in a CAD program at a workstation. The marks 4 can also have been added to the model 2 there. Alternatively, the marking apparatus 1 can also have means for adding marks 4 to the model 2, for example by way of a touch-sensitive screen (touchscreen).
[0049] In the right half of the image, the wall 3 is depicted. Standing in front of the wall 3 is a person 7, for example a craftsman, who intends to drill holes at the work sites 5.
[0050] The person 7 is carrying a marking apparatus 1 according to the invention, which in this example is designed as a portable handheld device 15. The marking apparatus 1 has a projection apparatus 8, which is embodied such that a mark 4 can be projected onto the wall 3 in a locationally correct manner. As can be seen in the model 2, the mark 4 that is on the right is active. Accordingly, this mark 4 is projected onto the wall 3. The projection apparatus 8 can comprise for example a laser and a deflecting mirror, with which any desired pattern can be projected.
[0051] To determine the alignment, the marking apparatus 1 has a measuring apparatus that has for example one or more location sensors. It is particularly advantageous if the measuring apparatus has a plurality of acceleration sensors and at least one rate sensor.
[0052]
[0053] The marking apparatus 1 here has a presentation apparatus 9 having a display 10, in which the marks 4 and the marking apparatus 1 in the model 2 can be presented. In order to then align the marking apparatus 1 with a mark 4, all that is necessary is for the marking apparatus 1 to be moved until the presentation 11 of the marking apparatus 1 comes to lie congruently on the presentation of a mark 4. In addition, a projection apparatus may also be present in this embodiment of the marking apparatus 1 in order to project the mark 4, which has been manually aligned in this fashion, onto the object. Alternatively, the marking apparatus can also only have a simple laser pointer that projects a point in the work direction onto the object to optically indicate the work site after the alignment.
[0054]
[0055] An even simpler and more cost-effective embodiment of the invention is shown in
[0056]
[0057]
[0058] The crosshair 16 is capturable with the capture apparatus 14, and the alignment of the hand-held device 15 is determinable therefrom. Any shading 18 that may appear due to a person 7 can be compensated for by the capture apparatus 14 by way of extending the cut-off lines of the crosshair 16 to the point of intersection 17. On the basis of the alignment of the hand-held device 15, which has been ascertained in this way, a manual alignment with the active work site 5 can be performed using a presentation apparatus 9, for example having four arrow LEDs 12.
[0059]
[0060] Rather than the buttons 19, the display 10 can also be in the form of a touchscreen for example, such that the active mark 4 is settable directly via a selection on the display 10.
[0061]
[0062]
[0063] The invention describes a marking apparatus 1 having a presentation apparatus 9 for the optically guided alignment with a work site 5 on an object 3, wherein a digital model 2 of the object 3 is storable in a model memory and at least one mark 4 that corresponds to a work site 5 on the object 3 may be added to the digital model 2, wherein the location of the marking apparatus 1 with respect to the object 3 is determinable using a measuring apparatus.
LIST OF REFERENCE SIGNS
[0064] 1 Marking apparatus [0065] 2 Digital model [0066] 3 Wall [0067] 4 Mark [0068] 5 Work site [0069] 6 Circle [0070] 7 Person [0071] 8 Projection device [0072] 9 Presentation apparatus [0073] 10 Display [0074] 11 Presentation of the marking apparatus [0075] 12 Arrow LED [0076] 13 Direction arrow [0077] 14 Capture apparatus [0078] 15 Hand-held device [0079] 16 Crosshair [0080] 17 Point of intersection [0081] 18 Shading [0082] 19 Button [0083] 20 Stationary projection apparatus [0084] 21 Supplementing projection [0085] 22 Smartglasses