IP Library Granted Patent US 9,950,366
Granted Patent B2
US 9,950,366 · App. 15/371,617 · Granted Apr 24, 2018

Apparatus for additive manufacturing

Inventor: Ulf Ackelid (Goeteborg, SE)
Assignee: Arcam AB
B22F3/1055B05D3/068B22F1/025B28B1/001B29C67/0077B33Y10/00B33Y30/00B33Y70/00C23C14/00C23C14/223C23C16/4417B22F2003/1056B22F2998/10B22F2999/00Y02P10/295
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Quick Facts
Patent No.
US 9,950,366
App. No.
15/371,617
Granted
Apr 24, 2018
Kind
B2
Abstract

Various embodiments provide a method and apparatus for forming a three-dimensional article through successive fusion of parts of at least one layer of a powder bed provided on a work table in an additive manufacturing machine, which parts corresponds to successive cross sections of the three-dimensional article. The method comprises the steps of: applying a layer of predetermined thickness of powder particles on the work table, applying a coating on at least a portion of the powder particles, which coating is at least partially covering the powder particles, and fusing the powder particles on the work table with an electron beam.

Claims (26)

1. An apparatus for forming a three-dimensional article through successive fusion of parts of at least one layer of a powder bed applied onto a work table, which parts corresponds to successive cross sections of the three-dimensional article, said apparatus comprising:

a powder container for storing powder particles;

a coating device for coating at least a portion of said powder particles while said powder particles are inside the powder container with a coating material having at least one material characteristic that differs from a corresponding material characteristic of said powder particles;

a powder build tank adjacent to the powder container comprising a work table;

a powder distributor for distributing a layer of coated powder particles from said powder container as a powder bed on top of said work table; and

an energy beam source for fusing the layer of powder particles on said work table.

2. The apparatus according to claim 1 , wherein the at least one material characteristic of the coating material is an electrical conductivity.

3. The apparatus according to claim 2 , wherein said electrical conductivity of said coating material is higher than an electrical conductivity of the powder particles.

4. The apparatus according to claim 1 , wherein said work table comprises a vibrator, said vibrator being activated while coating said powder on said work table.

5. The apparatus according to claim 1 , wherein said coating device is selected from the group consisting of: a sputtering device, a chemical vapor deposition device, a physical vapor deposition device, a laser ablation device, a device for resistive melting of a target, a laser beam melting of a target, and electron beam melting of a target.

6. The apparatus according to claim 1 , wherein said work table and said coating device are provided in a vacuum chamber.

7. The apparatus according to claim 1 , wherein said apparatus further comprises a control unit, said control unit being configured to at least manipulate an electron beam emitted from said energy beam source.

8. The apparatus according to claim 7 , wherein the electron beam is configured, via the manipulation imposed by the control unit, for fusing the layer of powder particles on said work table.

9. An apparatus for forming a three-dimensional article through successive fusion of parts of at least one layer of a powder bed applied onto a work table, which parts corresponds to successive cross sections of the three-dimensional article, said apparatus comprising:

a powder container for storing powder particles with a bottom opening;

a coating device located adjacent to said bottom opening for coating the powder particles as the powder particles exit the opening via free fall with a coating material having at least one material characteristic that differs from a corresponding material characteristic of said powder particles;

a powder build tank comprising a work table;

a powder distributor for distributing a layer of coated powder particles from said powder container as a powder bed on top of said work table; and

an energy beam source for fusing the layer of powder particles on said work table.

10. The apparatus according to claim 9 , wherein the at least one material characteristic of the coating material is an electrical conductivity.

11. The apparatus according to claim 10 , wherein said electrical conductivity of said coating material is higher than an electrical conductivity of the powder particles.

12. The apparatus according to claim 9 , wherein said work table comprises a vibrator, said vibrator being activated while coating said powder on said work table.

13. The apparatus according to claim 9 , wherein said coating device is selected from the group consisting of: a sputtering device, a chemical vapor deposition device, a physical vapor deposition device, a laser ablation device, a device for resistive melting of a target, a laser beam melting of a target, and electron beam melting of a target.

14. The apparatus according to claim 9 , wherein said work table and said coating device are provided in a vacuum chamber.

15. The apparatus according to claim 9 , wherein said apparatus further comprises a control unit, said control unit being configured to at least manipulate an electron beam emitted from said energy beam source.

16. The apparatus according to claim 15 , wherein the electron beam is configured, via the manipulation imposed by the control unit, for fusing the layer of powder particles on said work table.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2016
From: ACKELID, ULF
To: ARCAM AB
Reel/Frame 040590/0666 →
Continuity (3)
Division 14230922 · Mar 31, 2014
Provisional Application 61813555 · Apr 18, 2013
Related Publication 20170080494A1 · Mar 23, 2017