IP Library Granted Patent US 10,252,332
Granted Patent B2
US 10,252,332 · App. 14/511,675 · Granted Apr 9, 2019

Powder processing arrangement and method for use in an apparatus for producing three-dimensional work pieces

Inventor: Dieter Schwarze (Luebeck, DE)
Assignee: SLM Solutions Group AG
B22F1/0085B22F3/1055B29C64/20B33Y30/00B22F2003/1056B29C64/153B33Y10/00Y02P10/295
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Quick Facts
Patent No.
US 10,252,332
App. No.
14/511,675
Granted
Apr 9, 2019
Kind
B2
Abstract

A powder processing arrangement ( 10 ) for use in an apparatus ( 100 ) for producing three-dimensional work pieces by selectively irradiating a raw material powder with electromagnetic or particle radiation comprises a carrier element ( 16 ) having a build section ( 46 ) adapted to carry a raw material powder layer while being selectively irradiated with electromagnetic or particle radiation and at least one transfer section ( 48 a, 48 b ) adapted to carry the raw material powder prior to being applied to the build section ( 46 ) so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation. The powder processing arrangement ( 10 ) further comprises a heating device ( 50 ) adapted to pre-heat the raw material powder carried by the transfer section ( 48 a, 48 b ) of the carrier element ( 16 ) prior to being applied to the build section ( 46 ) of the carrier element ( 16 ) so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation.

Claims (27)

1. A powder processing arrangement for use in an apparatus for producing three-dimensional work pieces by selectively irradiating a raw material powder with electromagnetic or particle radiation, the powder processing arrangement comprising:

a carrier element having a build section adapted to carry a raw material powder layer while being selectively irradiated with electromagnetic or particle radiation and at least one transfer section adapted to carry the raw material powder prior to being applied to the build section so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation, and

a heating device adapted to pre-heat the raw material powder carried by the transfer section of the carrier element prior to being applied to the build section of the carrier element so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation,

a powder application device which is adapted to apply the raw material powder to the transfer section of the carrier element,

wherein the powder application device is movable across the carrier element and is provided with a slider which allows raw material powder carried by the transfer section of the carrier element to be transferred to the build section of the carrier element and to be distributed on the build section so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation on the build section by moving the powder application device across the carrier element, and

a control unit which is adapted to control the operation of the powder application device in such a manner that the raw material powder carried by the transfer section of the carrier element is transferred to the build section of the carrier element and distributed across the build section so as to form the raw material powder layer to be selectively irradiated with electromagnetic or particle radiation on the build section only after the raw material powder, while being carried by the transfer section, has been pre-heated by the heating device.

2. The powder processing arrangement according to claim 1 , wherein the heating device comprises a heating element integrated into the carrier element in the region of the transfer section of the carrier element.

3. The powder processing arrangement according to claim 1 , wherein the powder application device is provided with a dosing system which allows raw material powder to be applied to the transfer section in an amount which corresponds to the amount of raw material powder which is necessary to form a raw material powder layer to be selectively irradiated with electromagnetic or particle radiation on the build section of the carrier element.

4. The powder processing arrangement according to claim 1 , wherein the at least one transfer section is arranged adjacent to an edge of the build section and in particular extends along the entire length of the edge of the build section.

5. The powder processing arrangement according to claim 1 , wherein the carrier element comprises a first transfer section and a second transfer section, the first transfer section being arranged adjacent to a first edge of the build section and the second transfer section being arranged adjacent to a second edge of the build section.

6. The powder processing arrangement according to claim 5 , wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the first transfer section of the carrier element and left on the first transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the second transfer section is selectively irradiated with electromagnetic or particle radiation.

7. The powder processing arrangement according to claim 5 , wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the second transfer section of the carrier element and left on the second transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the first transfer section is selectively irradiated with electromagnetic or particle radiation.

8. The powder processing arrangement according to claim 5 ,

wherein the first and the second edge of the build section extend substantially parallel to each other.

9. The powder processing arrangement according to claim 1 ,

wherein the carrier element comprises a first transfer section and a second transfer section, the first transfer section being arranged adjacent to a first edge of the build section and the second transfer section being arranged adjacent to a second edge of the build section; and

wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the first transfer section of the carrier element and left on the first transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the second transfer section is selectively irradiated with electromagnetic or particle radiation.

10. The powder processing arrangement according to claim 9 ,

wherein the first and the second edge of the build section extend substantially parallel to each other.

11. The powder processing arrangement according to claim 1 ,

wherein the carrier element comprises a first transfer section and a second transfer section, the first transfer section being arranged adjacent to a first edge of the build section and the second transfer section being arranged adjacent to a second edge of the build section; and

wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the second transfer section of the carrier element and left on the second transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the first transfer section is selectively irradiated with electromagnetic or particle radiation.

12. The powder processing arrangement according to claim 11 ,

wherein the first and the second edge of the build section extend substantially parallel to each other.

13. An apparatus for producing three-dimensional work pieces by selectively irradiating a raw material powder with electromagnetic or particle radiation, the apparatus comprising a powder processing arrangement according to claim 1 .

14. The powder processing arrangement according to claim 1 , wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the first transfer section of the carrier element and left on the first transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the second transfer section is selectively irradiated with electromagnetic or particle radiation.

15. The powder processing arrangement according to claim 1 , wherein the control unit is adapted to control the operation of the powder application device in such a manner that raw material powder is applied to the second transfer section of the carrier element and left on the second transfer section of the carrier element while a raw material powder layer formed on the build section of the carrier element by transferring raw material powder to the build section from the first transfer section is selectively irradiated with electromagnetic or particle radiation.

Assignments (4)
MERGER Recorded Jan 3, 2024
From: SLM SOLUTIONS GROUP AG
To: NIKON SLM SOLUTIONS AG
Reel/Frame 066207/0173 →
CHANGE OF ADDRESS Recorded Oct 15, 2018
From: SLM SOLUTIONS GROUP AG
To: SLM SOLUTIONS GROUP AG
Reel/Frame 047225/0264 →
MERGER Recorded Feb 21, 2017
From: SLM SOLUTIONS GMBH
To: SLM SOLUTIONS GROUP AG
Reel/Frame 041772/0768 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2014
From: SCHWARZE, DIETER, DR
To: SLM SOLUTIONS GMBH
Reel/Frame 034251/0134 →
Priority Claims (1)
EP 13188055 · Oct 10, 2013 · regional
Continuity (1)
Related Publication 20160228949A1 · Aug 11, 2016