METHOD FOR ADDITIVELY MANUFACTURING OF THREE-DIMENSIONAL OBJECTS
Method for additively manufacturing of three-dimensional objects ( 2 ) by means of successive layerwise selective irradiation and consolidation of layers of a build material ( 3 ) which can be consolidated by means of an energy beam ( 4 ), wherein at least one layer of build material ( 3 ) which is to be selectively irradiated and consolidated is at least partly provided as a foil-like planar element ( 12 ) of a build material ( 3 ) which can be consolidated by means of an energy beam ( 4 ).
1 . Method for additively manufacturing of three-dimensional objects ( 2 ) by means of successive layerwise selective irradiation and consolidation of layers of a build material ( 3 ) which can be consolidated by means of an energy beam ( 4 ), characterized in that
at least one layer of build material ( 3 ) which is to be selectively irradiated and consolidated is at least partly provided as a foil-like planar element ( 12 ) of a build material ( 3 ) which can be consolidated by means of an energy beam ( 4 ).
2 . Method according to claim 1 , wherein a metal foil or a sheet metal is used as a foil-like planar element ( 12 ).
3 . Method according to claim 1 , wherein layers ( 3 a ) of build material ( 3 ) which are not provided as a foil-like planar element ( 12 ) are provided as a powder layer of a powdered build material ( 3 ).
4 . Method according to claim 1 , wherein the foil-like planar element ( 12 ) is selectively irradiated and consolidated, whereby selectively irradiated and consolidated portions of the foil-like planar element ( 12 ) are connected with previously selectively irradiated and consolidated portions of a preceding layer of build material ( 3 ).
5 . Method according to claim 1 , wherein the foil-like planar element ( 12 ) is selectively irradiated and consolidated, whereby selectively irradiated and consolidated portions of the foil-like planar element ( 12 ) are connected with a build platform of a build module.
6 . Method according to claim 1 , wherein not selectively irradiated and not consolidated portions of a foil-like planar element ( 12 ) are removed during and/or after selective irradiation and consolidation of the foil-like planar element ( 12 ).
7 . Method according to claim 6 , wherein after removal of not selectively irradiated and not consolidated portions of a foil-like planar element ( 12 ), a powdered build material ( 3 ) is applied to areas from which the not selectively irradiated and not consolidated portions of the foil-like planar element ( 12 ) have been removed.
8 . Method according to claim 7 , wherein the powdered build material ( 3 ) is selectively irradiated and consolidated by means of an energy beam ( 4 ).
9 . Method according to claim 1 , wherein the build material ( 3 ) forming the foil-like planar element ( 12 ) is different to the build material of a layer of build material ( 3 ) which is not provided as foil-like planar element ( 12 ).
10 . Method according to claim 1 , wherein the foil-like planar element ( 12 ) is provided from an endless supply device ( 9 ).
11 . Method according to claim 1 , wherein the foil-like planar element ( 12 ) is provided as a blank or cutting at least partly covering the build plane ( 10 ) in which the selective irradiation and consolidation of build material ( 3 ) takes place.
12 . Method according to claim 1 , wherein the foil-like planar element ( 12 ) is provided in a pre-heated state.
13 . Apparatus ( 1 ) for additively manufacturing of three-dimensional objects ( 2 ) by means of successive layerwise selective irradiation and consolidation of layers of a build material ( 3 ) which can be consolidated by means of an energy beam ( 4 ), characterized in that the apparatus ( 1 ) is configured to execute the method according to claim 1 .