IP Library Patent Application 16124135
Patent Application
App. No. 16/124,135

METHOD FOR OPERATING AT LEAST ONE APPARATUS FOR ADDITIVELY MANUFACTURING THREE-DIMENSIONAL OBJECTS

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Quick Facts
Patent No.
US None
App. No.
16/124,135
Abstract

Method for operating at least one apparatus ( 1 ) for additively manufacturing 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 wall region ( 8, 11, 12 ) is built, limiting at least one, in particular chamber-like, build region ( 9 ) in the build plane ( 6 ), wherein the object ( 2 ) is built in the build region ( 9 ), wherein at least one support structure ( 10, 14 - 20 ) is additively built in the build region ( 9 ) via the energy beam ( 4 ), which support structure ( 10, 14 - 20 ) extends at least partly between the wall region ( 8, 11, 12 ) and at least one object ( 2 ) that is being built in the build region ( 9 ).

Claims (13)

1 . Method for operating at least one apparatus ( 1 ) for additively manufacturing 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 wall region ( 8 , 11 , 12 ) is built, limiting at least one, in particular chamber-like, build region ( 9 ) in the build plane ( 6 ), wherein the object ( 2 ) is built in the build region ( 9 ), characterized in that at least one support structure ( 10 , 14 - 20 ) is additively built in the build region ( 9 ) via the energy beam ( 4 ), which support structure ( 10 , 14 - 20 ) extends at least partly between the wall region ( 8 , 11 , 12 ) and at least one object ( 2 ) that is being built in the build region ( 9 ).

2 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built at least partly extending from the wall region ( 8 , 11 , 12 ) towards the object ( 2 ) being built.

3 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built extending from the object ( 2 ) being built towards the wall region ( 8 , 11 , 12 ).

4 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built extending from the wall region ( 8 , 11 , 12 ) to the object ( 2 ) being built, linking the wall region ( 8 , 11 , 12 ) with the object ( 2 ).

5 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built strut-like or as a strut.

6 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built extending at least partly along the wall region ( 8 , 11 , 12 ) and/or in circumferential direction, in particular at least one support structure ( 10 , 14 - 20 ) is at least partly built as arc or arched and/or at least one support structure ( 10 , 14 - 20 ) is at least partly built as disc or disc-shaped.

7 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built comprising at least one curved section and/or at least one branch.

8 . Method according to claim 1 , characterized in that at least two support structures ( 10 , 14 - 20 ) are built in a defined distance, in particular dependent on a number of layers between the two support structures ( 10 , 14 - 20 ) and/or height dependent and/or dependent on a shape of the object ( 2 ) being built.

9 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built comprising at least one defined breaking region for separating the built object ( 2 ) from the at least one support structure ( 10 , 14 - 20 ).

10 . Method according to claim 1 , characterized in that at least two wall regions ( 8 , 11 , 12 ) are built, wherein the build region ( 9 ) is enclosed between the two wall regions ( 8 , 11 , 12 ).

11 . Method according to claim 1 , characterized in that at least one support structure ( 10 , 14 - 20 ) is built extending away from a side of the wall region ( 8 , 11 , 12 ) facing away from the object ( 2 ) being built.

12 . 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 at least one energy beam ( 4 ), wherein the apparatus ( 1 ) comprises at least one irradiation device adapted to generate the at least one energy beam ( 4 ) and adapted to guide the energy beam ( 4 ) along an energy beam ( 4 ) path extending in a build plane ( 6 ), wherein the irradiation device is adapted to irradiate build material ( 3 ) in the build plane ( 6 ) in that at least one wall region ( 8 , 11 , 12 ) is built, limiting at least one chamber-like build region ( 9 ) of the build plane ( 6 ), wherein the object ( 2 ) is built in the build region ( 9 ), characterized in that the irradiation device is adapted to irradiate build material ( 3 ) in the build region ( 9 ) of the build plane ( 6 ) in that at least one support structure ( 10 , 14 - 20 ) is additively built extending between the wall region ( 8 , 11 , 12 ) and at least one object ( 2 ) that is being built in the build region ( 9 ).

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 at least one energy beam ( 4 ), wherein the apparatus ( 1 ) comprises at least one irradiation device adapted to generate the at least one energy beam ( 4 ) and adapted to guide the energy beam ( 4 ) along an energy beam ( 4 ) path extending in a build plane ( 6 ), wherein the irradiation device is adapted to irradiate build material ( 3 ) in the build plane ( 6 ) in that at least one wall region ( 8 , 11 , 12 ) is built, limiting at least one chamber-like build region ( 9 ) of the build plane ( 6 ), wherein the object ( 2 ) is built in the build region ( 9 ), characterized in that the irradiation device is adapted to irradiate build material ( 3 ) in the build region ( 9 ) of the build plane ( 6 ) in that at least one support structure ( 10 , 14 - 20 ) is additively built extending between the wall region ( 8 , 11 , 12 ) and at least one object ( 2 ) that is being built in the build region ( 9 ), characterized in that the apparatus ( 1 ) is adapted to perform the method according 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 Sep 7, 2018
From: PONTILLER-SCHYMURA, PETER; EICHENBERG, BORIS; SCHÖDEL, FRANK
To: CL SCHUTZRECHTSVERWALTUNGS GMBH
Reel/Frame 046820/0063 →