IP Library Granted Patent US 8,299,208
Granted Patent B2
US 8,299,208 · App. 12/939,852 · Granted Oct 30, 2012

PAEK powder, in particular for the use in a method for a layer-wise manufacturing of a three-dimensional object, as well as method for producing it

Assignee: EOS GmbH Electro Optical Systems
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Quick Facts
Patent No.
US 8,299,208
App. No.
12/939,852
Granted
Oct 30, 2012
Kind
B2
Abstract

By a temper treatment a polyaryletherketone powder is processed such that it is particularly suited for the use in a method for a layer-wise manufacturing of a three-dimensional object. To this effect the powder is tempered at a temperature that is at least 20° C. above the glass transition temperature for at least 30 minutes before it is used as building material.

Claims (17)

1. Polyaryletherketone(PAEK) fine powder for the use as building material in a method for a layer-wise generation of three-dimensional objects, wherein the PAEK fine powder has a melt viscosity that lies below 0.25 kN*s/m 2 , a D 0.90 -value below 150 μm, a BET surface below 40 m 2 /g and a bulk density having a value equal to or larger than 0.42 g/cm 2 .

2. Polyaryletherketone(PAEK) fine powder for the use as building material in a method for a layer-wise generation of three-dimensional objects, wherein the PAEK fine powder has a melt viscosity between 0.25 kN*s/m 2 and 0.50 kN*s/m 2 , a D 0.90 -value below 150 μm, a BET surface below 40 m 2 /g and a bulk density having a value which is equal to or larger than 0.39 g/cm 2 .

3. Polyaryletherketone(PAEK) fine powder for the use as building material in a method for a layer-wise generation of three-dimensional objects, wherein the PAEK fine powder has a melt viscosity above 0.50 kN*s/m 2 , a D 0.90 -value below 150 μm, a BET surface below 40 m 2 /g and a bulk density having a value that is equal to or larger than 0.34 g/cm 2 .

4. Polyaryletherketone fine powder according to claim 1 that comprises at least one powder from the group polyetheretherketone (PEEK), polyetherketoneketone (PEKK), polyetherketone (PEK), polyetheretherketoneketone (PEEKK) or polyetherketoneetherketoneketone (PEKEKK).

5. Polyaryletherketone fine powder according to claim 2 that comprises at least one powder from the group polyetheretherketone (PEEK), polyetherketoneketone (PEKK), polyetherketone (PEK), polyetheretherketoneketone (PEEKK) or polyetherketoneetherketoneketone (PEKEKK).

6. Polyaryletherketone fine powder according to claim 3 that comprises at least one powder from the group polyetheretherketone (PEEK), polyetherketoneketone (PEKK), polyetherketone (PEK), polyetheretherketoneketone (PEEKK) or polyetherketoneetherketoneketone (PEKEKK).

7. Polyaryletherketone fine powder according to claim 1 , in which at least one additive is added as further component.

8. Polyaryletherketone fine powder according to claim 2 , in which at least one additive is added as further component.

9. Polyaryletherketone fine powder according to claim 3 , in which at least one additive is added as further component.

10. Polyaryletherketone fine powder according to claim 7 , wherein the additive is worked into the powder by means of a fusion joining.

11. Polyaryletherketone fine powder according to claim 8 , wherein the additive is worked into the powder by means of a fusion joining.

12. Polyaryletherketone fine powder according to claim 9 , wherein the additive is worked into the powder by means of a fusion joining.

13. Method for a layer-wise manufacturing of a three-dimensional object from a material in powder form, in which method successive layers of the object to be formed from solidifiable powder material are subsequently solidified at positions corresponding to the cross-section of the object and wherein the powder material is a powder according to claim 1 .

14. Method for a layer-wise manufacturing of a three-dimensional object from a material in powder form, in which method successive layers of the object to be formed from solidifiable powder material are subsequently solidified at positions corresponding to the cross-section of the object and wherein the powder material is a powder according to claim 2 .

15. Method for a layer-wise manufacturing of a three-dimensional object from a material in powder form, in which method successive layers of the object to be formed from solidifiable powder material are subsequently solidified at positions corresponding to the cross-section of the object and wherein the powder material is a powder according to claim 3 .

16. Method for a layer-wise manufacturing of a three-dimensional object from a material in powder form, in which successive layers of the object to be formed from a solidifiable powder material are successively solidified at positions corresponding to the cross-section of the object and wherein before the start of the manufacturing process the powder is treated by exposing the powder to a temperature that lies at least 20° above a glass transition temperature determined by means of differential scanning calorimetry (DSC) according to DIN 53765 for a period that is longer than 30 minutes, wherein the powder has been manufactured by grinding, a precipitation process from a solvent, melt spraying or spray drying from a coarse powder or granulate.

17. Method according to claim 16 , wherein the method is performed in a device for a layer-wise manufacturing of a three-dimensional object and the treatment of the powder is effected in the device for a layer-wise manufacturing of a three-dimensional object.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2010
From: MULLER, FRANK; PFISTER, ANDREAS; LEUTERER, MARTIN
To: EOS GMBH ELECTRO OPTICAL SYSTEMS
Reel/Frame 025436/0581 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2010
From: MULLER, FRANK; PFISTER, ANDREAS; LEUTERER, MARTIN
To: EOS GMBH ELECTRO OPTICAL SYSTEMS
Reel/Frame 025411/0126 →
Priority Claims (1)
DE 10 2007 016 656 · Apr 5, 2007 · national
Continuity (2)
Division 12061831 · Apr 3, 2008
Related Publication 20120114848A1 · May 10, 2012