IP Library Granted Patent US 10,486,267
Granted Patent B2
US 10,486,267 · App. 14/995,535 · Granted Nov 26, 2019

Laser ablation method with patch optimization

Inventor: David Conseil (Collonges-sous-Saleve, FR)
Assignee: Agie Charmilles New Technologies SA
B23K26/355B23K26/0006B23K26/082B23K26/359B23K26/361B23K26/362B23K26/40G05B19/4099B23K2101/20B23K2103/50B44C1/228G05B2219/36199G05B2219/45163
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Quick Facts
Patent No.
US 10,486,267
App. No.
14/995,535
Granted
Nov 26, 2019
Kind
B2
Abstract

A laser ablation method is provided for the engraving of a surface ( 7 ) of a two or three dimensional workpiece with a texture ( 16 ) by the laser beam ( 2 ) of a laser machining head ( 1 ). The surface engraving is conducted in one or more layers ( 17.1, 17.2 ), which are machined consecutively, wherein each defined layer ( 17.1, 17.2 ) to be machined is subdivided into one or more patches ( 11 ) intended be machined one after another with the laser beam ( 2 ). The borderline ( 18 ) of at least one patch ( 19 ) is determined in such a manner to follow along a path on the layer ( 17.1, 17.2, 17. x ) which will not be affected by the laser beam ( 2 ) engraving of the laser machining head ( 1 ).

Claims (33)

1. A laser ablation method for the engraving of a surface ( 7 ) of a two or three dimensional workpiece with a texture ( 16 ) by the laser beam ( 2 ) of a laser machining head ( 1 ), wherein the surface engraving is conducted in one or more layers ( 17 . 1 , 17 . 2 ) which are machined consecutively, the method comprising:

subdividing at least one of the one or more layers ( 17 . 1 , 17 . 2 ) to be machined into two or more patches ( 11 ) intended be machined one after another with the laser beam ( 2 ), the subdividing comprising determining a borderline ( 18 ) of at least one patch ( 19 ) of the two or more patches in such a manner that the at least one patch of the two or more patches comprises a first portion to be engraved and a second portion not to be engraved, the borderline being only along the second portion so as to follow along a path on that layer ( 17 . 1 , 17 . 2 , 17 . x ) which will not be affected by the laser beam ( 2 ) engraving of the laser machining head ( 1 ); and

laser machining the one or more layers in accordance with the associated two or more patches, wherein:

the borderline of at least one patch of at least one layer of the one or more layers crosses over the borderline of at least one patch of another at least one layer of the one or more layers viewed from above.

2. The laser ablation method according to claim 1 wherein:

the borderline ( 18 ) of the patch ( 19 ) forms a closed line.

3. The laser ablation method according to claim 1 , wherein:

the laser machining head ( 1 ) engraves in each determined patch ( 19 ) having a borderline ( 18 ) following along a path on that layer ( 17 . 1 , 17 . 2 , 17 . x ) which will not be affected by the laser beam ( 2 ) consecutively two or more layers of the one or more layers ( 17 . 1 , 17 . 2 , 17 . x ) on the workpiece surface ( 7 ) before the laser machining head ( 1 ) is repositioned to machine another patch ( 11 , 19 ).

4. The laser ablation method according to claim 1 , wherein:

once every patch ( 11 ) of a layer ( 17 . 1 ) has been machined, the following layer ( 17 . 2 , 17 . x ) to be machined is again subdivided into new patches ( 11 , 19 ), wherein the borderlines ( 18 ) of the new patches ( 19 ) are determined in such a manner to follow if possible along a path on that following layer ( 17 . 2 , 17 . x ) which will not be affected by the laser beam ( 2 ) engraving of the laser machining head ( 1 ) on that following layer ( 17 . 2 , 17 . x ).

5. The laser ablation method according to claim 1 , wherein:

a determined patch ( 19 ), having a borderline ( 18 ) which will not be affected by the laser beam ( 2 ) engraving, is machined such that a predefined amount l m of layers ( 17 . 1 , 17 . 2 , 17 . x ) are consecutively machined by laser ablation on the workpiece surface ( 7 ) delimited by that patch ( 19 ).

6. The laser ablation method according to claim 5 , wherein:

the predefined amount of layers l m is lower than a total predetermined amount of layers l total foreseen for the laser engraving of the texture on the surface ( 7 ) of the workpiece.

7. The laser ablation method according to claim 1 , wherein:

the texture to be engraved on the surface of the workpiece is determined by a grey level image ( 16 ), wherein every grey level in that image ( 16 ) corresponds to a certain depth to be ablated into the workpiece surface ( 7 ).

8. The laser ablation method according to claim 7 , wherein:

every said grey level corresponds to a defined layer ( 17 . 1 , 17 . 2 , 17 . x ).

9. The laser ablation method according to claim 2 wherein:

the workpiece is a three dimensional workpiece.

10. A laser ablation method for the engraving of a surface ( 7 ) of a two or three dimensional workpiece with a texture ( 16 ) by the laser beam ( 2 ) of a laser machining head ( 1 ), whereat the surface engraving is conducted in two or more layers ( 17 . 1 , 17 . 2 , 17 . x ), wherein:

each time a new layer is to be subdivided into patches ( 11 , 19 ) the laser ablation method of claim 1 is applied.

11. The laser ablation method according to claim 10 , wherein:

a determined patch ( 19 ), having a borderline ( 18 ) which will not be affected by the laser beam ( 2 ) engraving, is machined such that a predefined amount l m of layers ( 17 . 1 , 17 . 2 , 17 . x ) are consecutively machined by laser ablation on the workpiece surface ( 7 ) delimited by that patch ( 19 ).

12. The laser ablation method according to claim 11 , wherein:

the predefined amount of layers l m is lower than a total predetermined amount of layers l total foreseen for the laser engraving of the texture on the surface ( 7 ) of the workpiece.

13. The laser ablation method according to claim 11 , wherein:

the texture to be engraved on the surface of the workpiece is determined by a grey level image ( 16 ), wherein every grey level in that image ( 16 ) corresponds to a certain depth to be ablated into the workpiece surface ( 7 ).

14. The laser ablation method according to claim 13 , wherein:

every grey level corresponds to a defined layer ( 17 . 1 , 17 . 2 , 17 . x ).

15. A laser ablation method for the engraving of a surface ( 7 ) of a two or three dimensional workpiece with a texture ( 16 ) by the laser beam ( 2 ) of a laser machining head ( 1 ), wherein the surface engraving is conducted in one or more layers ( 17 . 1 , 17 . 2 ) which are machined consecutively, the method comprising:

subdividing at least one of the one or more layers ( 17 . 1 , 17 . 2 ) to be machined into two or more patches ( 11 ) intended be machined one after another with the laser beam ( 2 ), the subdividing comprising determining a borderline ( 18 ) of at least one patch ( 19 ) of the two or more patches in such a manner to comprise a first portion to be engraved and a second portion not to be engraved, the borderline being only along the second portion so as to follow along a path on that layer ( 17 . 1 , 17 . 2 , 17 . x ) which will not be affected by the laser beam ( 2 ) engraving of the laser machining head ( 1 ); and

laser machining the one or more layers in accordance with the associated two or more patches, wherein the borderline of at least one patch of at least one layer of the one or more layers crosses over the borderline of at least one patch of another at least one layer of the one or more layers viewed from above.

Assignments (2)
MERGER Recorded Jun 21, 2021
From: AGIE CHARMILLES NEW TECHNOLOGIES SA
To: GF MACHINING SOLUTIONS AG
Reel/Frame 056601/0039 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2016
From: CONSEIL, DAVID
To: AGIE CHARMILLES NEW TECHNOLOGIES SA
Reel/Frame 037491/0316 →
Priority Claims (1)
EP 15151873 · Jan 21, 2015 · regional
Continuity (1)
Related Publication 20160207141A1 · Jul 21, 2016
Cited By (2)
US 12,263,518 US 12,691,524