Method for distance measurement by means of OCT and associated computer program product
A method for distance measurement includes: (a) measuring a focus distance between a z-focus position of a processing laser beam and a reference surface, and measuring a reference distance between a reference arm mirror of a coherence tomography apparatus and the reference surface using a measurement beam. The processing laser beam is directed onto the reference surface via a laser processing optical unit. The measurement beam is directed onto a same point of the reference surface as the processing beam or onto a point of the reference surface next to an impingement point of the processing beam. The method further includes (b) measuring a workpiece distance between the reference arm mirror and a workpiece surface using the measurement beam directed onto the workpiece surface, and (c) determining the distance between workpiece surface and the z-focus position based on the reference distance and the workpiece distance and the focus distance.
1 . A method for distance measurement using an optical coherence tomography apparatus, the method comprising:
(a) measuring a focus distance between a z-focus position of a processing laser beam and a reference surface, the processing laser beam being directed onto the reference surface via a laser processing optical unit,
directing a measurement beam onto the reference surface, and measuring a reference distance between a reference arm mirror of the coherence tomography apparatus and the reference surface using the measurement beam, the measurement beam being directed onto a same point of the reference surface as the processing beam or onto a point of the reference surface next to an impingement point of the processing beam;
(b) directing the measurement beam onto a workpiece surface, and measuring a workpiece distance between the reference arm mirror and the workpiece surface using the measurement beam, and
(c) determining the distance between workpiece surface and the z-focus position based on the reference distance and the workpiece distance and the measured focus distance.
2 . The method as claimed in claim 1 , wherein, in step (a), the processing laser beam and the measurement beam are directed onto the reference surface perpendicularly.
3 . The method as claimed in claim 1 , wherein, in step (b), the measurement beam is directed onto the workpiece surface perpendicularly or obliquely.
4 . The method as claimed in claim 1 , wherein, in step (c), a movement of a processing head or of a focusing optical unit of the processing head that has taken place in a z-direction between step (a) and step (b) is taken into account when determining the distance.
5 . The method as claimed in claim 1 , wherein in step (b) the measurement beam is directed onto the workpiece surface by the laser processing optical unit or by an x-y relative movement between the laser processing optical unit and the workpiece.
6 . The method as claimed in claim 1 , wherein the z-focus position of the processing laser beam directed onto the workpiece surface relative to the workpiece surface is set based on the distance as determined.
7 . The method as claimed in claim 1 , wherein a target distance between workpiece surface and the z-focus position is corrected to the distance as determined, wherein the target distance is stored in a machine controller.
8 . The method as claimed in claim 1 , wherein the distance is determined cyclically based on a currently measured reference distance and a currently measured workpiece distance.
9 . A non-transitory computer-readable medium having a program code embodied thereon, the program code, when executed by a machine controller of a laser processing machine, causing the machine controller to perform the method as claimed in claim 1 .