IP Library Granted Patent US 12708965
Granted Patent B2
US 12708965 · App. 18/874,186 · Granted Aug 18, 2026

Control of a laser cutting machine by means of airborne sound signals

Inventors: Michael Berger (Bern, CH); Andreas Luedi (Burgdorf, CH); Roland Bader (Ruetschelen, CH)
Assignee: BYSTRONIC LASER AG
B23K31/10B23K26/03B23K26/0869B23K26/1462B23K26/38B23K26/702B23K31/125B23K37/0408
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Quick Facts
Patent No.
US 12708965
App. No.
18/874,186
Granted
Aug 18, 2026
Kind
B2
Abstract

The present disclosure relates to a method for providing a quality assessment result and a laser cutting machine for cutting workpieces at a processing point. The laser cutting machine is designed as having: a laser cutting head which is mounted so as to be movable at least in an X-direction and defines a beam propagation direction of a laser beam; a storage device for storing the workpiece to be cut; a machine frame with at least one frame part; at least one airborne sound sensor, which can be moved in the X-direction relative to the frame part, wherein the at least one airborne sound sensor is arranged in the beam propagation direction after, in particular below, the processing point and oriented towards the latter.

Claims (22)

1 . A laser cutting machine for cutting workpieces at a processing point, the laser cutting machine comprising:

a laser cutting head, which is mounted so to be movable at least in an X-direction and defines a beam propagation direction of a laser beam;

a storage device for storing the workpiece to be cut;

a machine frame with at least one frame part;

at least one airborne sound sensor, which is configured to be moved in the X-direction relative to the at least one frame part, wherein the at least one airborne sound sensor is arranged in the beam propagation direction after or below the processing point and oriented towards the processing point, and

a bridge with two bridge feet arranged laterally thereon for guiding the bridge on the machine frame in the X-direction perpendicular to a Y-direction, wherein the at least one airborne sound sensor is arranged at least indirectly on a bridge foot.

2 . The laser cutting machine according to claim 1 , wherein at least two airborne sound sensors, or four airborne sound sensors, are arranged in the beam propagation direction below the processing point and oriented towards the processing point.

3 . The laser cutting machine according to claim 1 , wherein the at least one airborne sound sensor serves to detect airborne sound in a frequency range between 10 Hz and 2 MHz, or in a range between 150 kHz and 700 kHz.

4 . The laser cutting machine according to claim 3 , wherein the at least one airborne sound sensor is arranged on each of the two bridge feet.

5 . The laser cutting machine according to claim 1 , wherein at least two airborne sound sensors are arranged on one bridge foot in each case, on a holder on the bridge foot in each case, and are at a distance from one another in the X-direction.

6 . The laser cutting machine according to claim 5 , wherein the at least two airborne sound sensors are at a sensor distance from one another in relation to the X-direction which is smaller than a distance between two grid elements of the storage device for the workpiece to be processed.

7 . The laser cutting machine according to claim 1 , wherein at least one fluid nozzle for generating a fluid curtain is arranged in front of the one or more airborne sound sensors in a direction of sound detection.

8 . The laser cutting machine according to claim 7 , wherein an evaluation device is provided for sensor signals of the at least one airborne sound sensor, wherein the sensor signals in the evaluation device are corrected for sound emissions of the at least one fluid nozzle.

9 . The laser cutting machine according to claim 1 , wherein the laser cutting machine includes optical sensors in order to detect optical signals from a process zone of the laser processing of the workpiece.

10 . The laser cutting machine according to claim 1 , wherein the laser cutting machine comprises a control unit.

11 . A laser cutting system for monitoring and/or controlling a laser cutting machine, the laser cutting system comprising:

a laser cutting machine as claimed in claim 1 , which is configured to cut workpieces;

a digital processing unit comprising:

a read-in interface for reading in detected airborne sound signals from the at least one airborne sound sensor during the laser cutting of a workpiece,

a computing unit, which is configured to apply a machine learning algorithm to the detected sound signals in order to evaluate said detected sound signals and provide an estimated cutting quality as a result,

an output interface for outputting the result; and

a network for data exchange with the digital processing unit.