IP Library Patent Application 16054635
Patent Application
App. No. 16/054,635

APPARATUS FOR MANUFACTURING THREE-DIMENSIONAL OBJECTS

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Quick Facts
Patent No.
US None
App. No.
16/054,635
Abstract

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 ), wherein a detection device ( 13 ) is provided that is configured to detect splash particles ( 8 - 10 ) generated by at least partially evaporating build material ( 3 ) in a consolidation zone ( 7 ) in which the energy beam ( 4 ) irradiates the build material ( 3 ).

Claims (17)

1 . 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 by a detection device ( 13 ) configured to detect splash particles ( 8 - 10 ) generated by at least partially evaporating build material ( 3 ) in a consolidation zone ( 7 ) in which the energy beam ( 4 ) irradiates the build material ( 3 ).

2 . Apparatus according to claim 1 , characterized in that the detection device ( 13 ) is configured to detect and/or determine a spray characteristic of the splash particles ( 8 - 10 ) generated in the consolidation zone ( 7 ).

3 . Apparatus according to claim, characterized in that the detection device ( 13 ) is configured to detect the size and/or an amount and/or a speed of the splash particles ( 8 - 10 ) and/or an impact ( 12 ) of a splash particle on a build plane ( 6 ) and/or a pattern of impacts ( 12 ) of splash particles ( 8 - 10 ) on the build plane ( 6 ).

4 . Apparatus according to claim 1 , characterized in that the detection device ( 13 ) is configured to determine a degree of evaporation of build material ( 3 ) in the consolidation zone ( 7 ).

5 . Apparatus according to claim 4 , characterized in that the detection device ( 13 ) is configured to determine the degree of evaporation via at least one algorithm, in particular an image analysis algorithm.

6 . Apparatus according to claim 2 , characterized in that a control unit ( 14 ) is configured to control at least one process parameter, preferably a parameter of the energy beam ( 4 ), in particular an energy beam power and/or an energy beam intensity, dependent on at least one detected splash particle ( 8 - 10 ) and/or a detected impact ( 12 ) of a splash particle ( 8 - 10 ) on a build plane ( 6 ) and/or a pattern of impacts ( 12 ) of splash particles ( 8 - 10 ) on the build plane ( 6 ) and/or the determined degree of evaporation.

7 . Apparatus according to claim 6 , characterized in that the control unit ( 14 ) is configured to control the process parameter dependent on at least one ambient parameter.

8 . Apparatus according to claim 7 , characterized in that the ambient parameter is or comprises a stream of gas, in particular process gas and/or oxygen, a temperature, in particular of the process region and/or the ambience and/or the consolidation zone ( 7 ).

9 . Apparatus according to claim 1 , characterized in that the detection device ( 13 ) is or comprises at least one optical measuring device, in particular an optical sensor.

10 . Apparatus according to claim 1 , characterized by a display unit ( 15 ) configured to display a detected splash particle ( 8 - 10 ) and/or a detected impact ( 12 ) of a splash particle on a build plane ( 6 ) and/or a pattern of impacts ( 12 ) of splash particles ( 8 - 10 ) on the build plane ( 6 ) and/or a determined degree of evaporation to a user.

11 . Apparatus according to claim 1 , characterized in that the detection device ( 13 ) is arranged off-axis with respect to a beam path of the energy beam ( 4 ).

12 . Detection device ( 13 ) for an apparatus for additively manufacturing three-dimensional objects 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 detection device ( 13 ) is configured to detect splash particles ( 8 - 10 ) generated by at least partially evaporating build material ( 3 ) in a consolidation zone ( 7 ) in which the energy beam ( 4 ) irradiates the build material ( 3 ).

13 . Method for operating at least one 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 splash particles ( 8 - 10 ) generated by at least partially evaporating build material ( 3 ) in a consolidation zone ( 7 ) in which the energy beam ( 4 ) irradiates the build material ( 3 ) are detected.

14 . Method for operating at least one 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 splash particles ( 8 - 10 ) generated by at least partially evaporating build material ( 3 ) in a consolidation zone ( 7 ) in which the energy beam ( 4 ) irradiates the build material ( 3 ) are detected, the method is performed on an apparatus ( 1 ) according to claim 1 .

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 Aug 8, 2018
From: BECHMANN, FLORIAN; BOKKES, TOBIAS; SCHUMANN, PHILIPP; WERNER, JÜRGEN; EBERT, MARIE-CHRISTIN; POPP, ALEXANDRA
To: CL SCHUTZRECHTSVERWALTUNGS GMBH
Reel/Frame 046588/0198 →