IP Library › Granted Patent US 11,045,918
Granted Patent B2
US 11,045,918 · App. 16/068,924 · Granted Jun 29, 2021

Method for determining an X-Y-Z reference coordinate of a workpiece, and machine tool

Inventors: Benjamin Böck (Brensbach/Wersau, DE); Gregor Leinfelder (Mühltal, DE); Maximilian Barnikol (Ober-Ramstadt, DE)
Assignee: DATRON AG
B23Q17/2409B23Q17/2233B23Q17/249B23Q17/2471G01B5/008
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Quick Facts
Patent No.
US 11,045,918
App. No.
16/068,924
Granted
Jun 29, 2021
Kind
B2
Abstract

In a method for referencing a workpiece ( 2 ) arranged in a machine tool, an image of the workpiece ( 2 ) is first of all created using a camera device ( 5 ) of the machine tool and is then displayed on a display device ( 6 ). An X-Y display coordinate ( 9 ) is selected by a user using the displayed image. A Z reference coordinate is then determined in an automated manner. An X-Y-Z starting coordinate ( 7 ) can be calculated on the basis of the Z reference coordinate determined in an automated manner and the X-Y display coordinate ( 9 ) input by the user. A measuring probe ( 8 ) of the machine tool is then moved in an automated manner to the X-Y-Z starting coordinate ( 7 ) and the X-Y-Z reference coordinate of the workpiece ( 2 ) is determined on the basis of the position of the measuring probe ( 8 ), as predefined by the X-Y-Z starting coordinate ( 7 ), by means of a suitable determination method using the measuring probe ( 8 ). In order to determine the Z reference coordinate, the measuring probe ( 8 ) is moved through the region which can be captured by the camera device ( 5 ) along a viewing beam ( 16 ) starting from the camera device ( 5 ) in the direction of a target point ( 26 ) until the measuring probe ( 8 ) touches the workpiece ( 2 ).

Claims (30)

1. A method for determining an X-Y-Z reference coordinate of a workpiece arranged in a machine tool, comprising:

capturing an image of the workpiece with a camera device of the machine tool and displaying the captured image on a display device;

allowing a user to select and input an X-Y display coordinate via the displayed image;

determining a Z reference coordinate in an automated manner; and

determining the X-Y-Z reference coordinate based upon the Z reference coordinate determined in an automated manner and the X-Y display coordinate input by the user.

2. The method according to claim 1 , wherein determining the X-Y-Z reference coordinate further comprises:

computing an X-Y-Z starting coordinate based upon the Z reference coordinate determined in an automated manner and the X-Y display coordinate input by the user;

displacing a measuring device of the machine tool to the X-Y-Z starting coordinate in an automated manner; and

determining the X-Y-Z reference coordinate of the workpiece based upon the position of the measuring device defined by the X-Y-Z starting coordinate by means of a suitable determination method by the measuring device.

3. The method according to claim 2 ,

wherein the measuring device is a touch-sensitive measuring probe, and

wherein the touch-sensitive measuring probe is displaced through a region detectable by the camera device in the direction of a target point specified by the user for the determination of the Z coordinate, until the touch-sensitive measuring probe touches the workpiece.

4. The method according to claim 3 , wherein the target point corresponds to the X-Y display coordinate or is separately specified on the display device by the user.

5. The method according to claim 3 , wherein the touch-sensitive measuring probe is displaced along a viewing beam starting from the camera device in the direction of the target point.

6. The method according to claim 1 , wherein the Z reference coordinate is determined by a sensor device.

7. The method according to claim 1 ,

wherein, for the selection of the X-Y display coordinate on the displayed image, a graphical input object input by a user is converted to an X-Y selection object in an automated manner, and

wherein the X-Y selection object is displayed on the display device in a manner as to superimpose the displayed image of the workpiece.

8. The method of claim 7 , wherein the user can enter further parameters for the automated determination method of the reference coordinates of the workpiece via the X-Y selection object.

9. The method according to claim 7 , wherein the parameters specified by the user via the X-Y selection object and possibly further parameters for the automated determination method are converted to machine parameters, which are transmitted to a controller of the machine tool via an interface device.

10. A machine tool for the machining of a workpiece, comprising:

a displaceable measuring device;

a controller for the control of the displaceable measuring device,

wherein an X-Y-Z reference coordinate of the workpiece intended for machining is determined in a determination method using the measuring device based upon an X-Y-Z starting coordinate;

an operating device for the input of control commands by a user, comprising a graphical display device for the displaying of user inputs; and

a camera device, by means of which an image of the workpiece arranged in the machine tool can be captured and subsequently displayed on the graphical display device,

wherein the machine tool is configured in such a way that the method according to claim 1 can be performed.

11. The machine tool according to claim 10 , wherein the camera device and the measuring device are arranged on a machining head of the machine tool.

12. The machine tool according to claim 10 , wherein the measuring device is a measuring probe.

13. The machine tool according to claim 10 , wherein the display device comprises a touch-sensitive graphical display, so that a user can input a graphical input object for specifying the X-Y display coordinate by touching the graphical display.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2018
From: BÖCK, BENJAMIN; LEINFELDER, GREGOR; BARNIKOL, MAXIMILIAN
To: DATRON AG
Reel/Frame 047657/0433 →
Priority Claims (1)
DE 10 2016 100 308.5 · Jan 11, 2016 · national
Continuity (1)
Related Publication 20190047106A1 · Feb 14, 2019
Cited By (1)
US 12,215,971