IP Library Patent Application 16184902
Patent Application
App. No. 16/184,902

APPARATUS FOR ADDITIVELY MANUFACTURING THREE-DIMENSIONAL OBJECTS

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Patent No.
US None
App. No.
16/184,902
Abstract

Apparatus ( 1, 32 ) for additively manufacturing of three-dimensional objects ( 2 ) by means of successive layerwise selective irradiation and consolidation of layers of a build material which can be consolidated by means of an irradiation device ( 3 ) comprising at least two irradiation elements ( 4 - 8 ) arranged as an irradiation array ( 9 ), in particular on at least one common irradiation element carrier ( 10 ), wherein each irradiation element ( 4 - 8 ) is adapted to emit an energy beam ( 11 - 15 ) guidable or guided along an, in particular at least partially curved, energy beam path ( 17 - 21 ) in the build plane ( 16 ), wherein the irradiation array ( 9 ) is moveable relative to the build plane ( 16 ), wherein a control unit ( 22 ) is provided that is adapted to control a ratio of at least two energy inputs into at least two energy beam paths ( 17 - 21 ) of at least two energy beams.

Claims (26)

1 . Apparatus ( 1 , 32 ) for additively manufacturing three-dimensional objects ( 2 ) by means of successive layerwise selective irradiation and consolidation of layers of a build material which can be consolidated by means of an irradiation device ( 3 ) comprising at least two irradiation elements ( 4 - 8 ) arranged as an irradiation array ( 9 ), in particular on at least one common irradiation element carrier ( 10 ), wherein each irradiation element ( 4 - 8 ) is adapted to emit an energy beam ( 11 - 15 ) guidable or guided along an, in particular at least partially curved, energy beam path ( 17 - 21 ) in the build plane ( 16 ), wherein the irradiation array ( 9 ) is moveable relative to the build plane ( 16 ), characterized by a control unit ( 22 ) adapted to control a ratio of at least two energy inputs into at least two energy beam paths ( 17 - 21 ) of at least two energy beams ( 11 - 15 ) and/or a ratio of spot sizes of at least two energy beams ( 11 - 15 ) emitted by at least two irradiation elements ( 4 - 8 ).

2 . Apparatus according to claim 1 , characterized in that the control unit ( 22 ) is adapted to control the energy input and/or the spot size based on at least one parameter relating to an at least partially curved section of at least one energy beam path ( 17 - 21 ).

3 . Apparatus according to claim 1 , characterized in that the control unit ( 22 ) is adapted to control the ratio of the at least two energy inputs and/or the spot sizes of the at least two energy beams ( 11 - 15 ) dependent on the at least one parameter relating to an energy beam path length difference.

4 . Apparatus according to claim 1 , characterized in that the control unit ( 22 ) is adapted to adjust a defined ratio of the energy inputs and/or the spot sizes, in particular per energy beam path length, of energy beams ( 11 - 15 ) emitted by at least two irradiation elements ( 4 - 8 ), in particular matching the energy inputs of at least two energy beams ( 11 - 15 ) emitted by at least two irradiation elements ( 4 - 8 ).

5 . Apparatus according to claim 2 , characterized in that the at least one parameter is or comprises

a moving speed of the at least one energy beam ( 11 - 15 ) along the corresponding energy beam path ( 17 - 21 ) and/or

a moving speed difference of at least two energy beams ( 11 - 15 ) of the same irradiation array ( 9 ) along the corresponding energy beam path ( 17 - 21 ) and/or

a length of the energy beam path ( 17 - 21 ) of at least one irradiation element ( 4 - 8 ) and/or

a length difference of at least two energy beam path of different irradiation elements ( 4 - 8 ) of the same irradiation array ( 9 ) and/or

a curvature of at least one part of the at least one energy beam path ( 17 - 21 ) and/or

a radius of at least one part of the at least one energy beam path ( 17 - 21 ) and/or

a writing time of at least one energy beam ( 11 - 15 ) and/or

a writing time difference of at least two energy beams ( 11 - 15 ).

6 . Apparatus according to claim 1 , characterized in that the control unit ( 22 ) is adapted to control the energy input via an adjustment of at least one irradiation parameter of at least one irradiation element ( 4 - 8 ) of the irradiation array ( 9 ).

7 . Apparatus according to claim 6 , characterized in that the control unit ( 22 ) is adapted to adjust the at least one irradiation parameter dependent on at least one motion parameter of the irradiation array ( 9 ), in particular a pivot movement.

8 . Apparatus according to claim 6 , characterized in that the control unit ( 22 ) is adapted to adjust at least one irradiation parameter individually for at least two irradiation elements ( 4 - 8 ) of the irradiation array ( 9 ), in particular individually for each irradiation element ( 4 - 8 ) of the irradiation array ( 9 ).

9 . Apparatus according to claim 6 , characterized in that the at least one irradiation parameter is or comprises

an energy of at least one energy beam ( 11 - 15 ) and/or

a spot geometry of at least one energy beam ( 11 - 15 ) and/or

a writing time.

10 . Apparatus according to claim 1 , characterized in that the irradiation array ( 9 ) is translatory movable relative to the build plane ( 16 ).

11 . Apparatus according to claim 1 , characterized in that the irradiation device ( 3 ) is adapted to control a pivot movement of the irradiation array ( 9 ) dependent on at least one energy beam path ( 17 - 21 ), wherein the irradiation array ( 9 ) is pivotable about a pivot axis, in particular a pivot axis ( 25 ) essentially perpendicular to a build plane ( 16 ) of the apparatus ( 1 , 32 ).

12 . Apparatus according to claim 11 , characterized in that the irradiation array ( 9 ) is inclinable relative to a moving direction along the energy beam path ( 17 - 21 ).

13 . Apparatus according to claim 1 , characterized by a carrying device carrying build material arranged in a build plane ( 16 ) of the apparatus ( 1 , 32 ), wherein the carrying device is adapted to move, in particular pivotably and/or height-adjustably move, the build plane ( 16 ) relative to at least one irradiation element ( 4 - 8 ) of the irradiation array ( 9 ).

14 . Irradiation device ( 3 ) for an apparatus ( 1 , 32 ) for additively manufacturing three-dimensional objects, in particular an apparatus ( 1 , 32 ) according to claim 1 , which irradiation device ( 3 ) comprises at least two irradiation elements ( 4 - 8 ) arranged as an irradiation array ( 9 ), in particular on at least one common irradiation element carrier ( 10 ), wherein each irradiation element ( 4 - 8 ) is adapted to emit an energy beam ( 11 - 15 ) guidable or guided along an, in particular at least partially curved, energy beam path ( 17 - 21 ) in the build plane ( 16 ), wherein the irradiation array ( 9 ) is moveable relative to the build plane ( 16 ), characterized by a control unit ( 22 ) adapted to control a ratio of at least two energy inputs into at least two energy beam paths ( 17 - 21 ) of at least two energy beams ( 11 - 15 ) and/or a ratio of spot sizes of at least two energy beams ( 11 - 15 ) emitted by at least two irradiation elements ( 4 - 8 ).

15 . Method for operating at least one apparatus ( 1 , 32 ) for additively manufacturing three-dimensional objects by means of successive layerwise selective irradiation and consolidation of layers of a build material which can be consolidated by means of an energy source, in particular an apparatus ( 1 , 32 ) according to claim 1 , wherein the apparatus ( 1 , 32 ) comprises an irradiation device ( 3 ) with an irradiation array ( 9 ) with at least two irradiation elements ( 4 - 8 ) arranged as an irradiation array ( 9 ), in particular on at least one common irradiation element carrier ( 10 ), wherein each irradiation element ( 4 - 8 ) is adapted to emit an energy beam ( 11 - 15 ) guidable or guided along an, in particular at least partially curved, energy beam path ( 17 - 21 ) in the build plane ( 16 ), wherein the irradiation array ( 9 ) is moveable relative to the build plane ( 16 ), characterized in that a ratio of at least two energy inputs into at least two energy beam paths ( 17 - 21 ) of at least two energy beams ( 11 - 15 ) and/or a ratio of spot sizes of at least two energy beams ( 11 - 15 ) emitted by at least two irradiation elements ( 4 - 8 ) is controlled.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Feb 28, 2020
From: CL SCHUTZRECHTSVERWALTUNGS GMBH; CONCEPT LASER GMBH
To: CONCEPT LASER GMBH
Reel/Frame 052048/0799 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2018
From: PONTILLER-SCHYMURA, PETER; SCHÖDEL, FRANK; EICHENBERG, BORIS
To: CL SCHUTZRECHTSVERWALTUNGS GMBH
Reel/Frame 047465/0959 →