IP Library Granted Patent US 10,099,267
Granted Patent B2
US 10,099,267 · App. 15/446,491 · Granted Oct 16, 2018

High-density, crack-free metallic parts

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Quick Facts
Patent No.
US 10,099,267
App. No.
15/446,491
Granted
Oct 16, 2018
Kind
B2
Abstract

In various embodiments, three-dimensional layered metallic parts are substantially free of gaps between successive layers, are substantially free of cracks, and have densities no less than 97% of the theoretical density of the metallic material.

Claims (28)

1. A three-dimensional part manufactured by additive manufacturing using a feedstock material comprising molybdenum, the part (i) comprising a plurality of layers each comprising solidified molybdenum, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the part is no less than 97% of a theoretical density of molybdenum, and wherein a concentration within the part of each of sodium, calcium, antimony, magnesium, phosphorous, and potassium is less than 1 ppm by weight and at least 0.001 ppm by weight.

2. The part of claim 1 , wherein the density of the part is no less than 99% of the theoretical density of molybdenum.

3. The part of claim 1 , wherein a concentration of oxygen within the part is less than 5 ppm by weight and at least 0.001 ppm by weight.

4. The part of claim 1 , wherein the feedstock material comprises wire.

5. The part of claim 1 , wherein the feedstock material comprises arc-melted wire.

6. The part of claim 1 , wherein the feedstock material comprises wire fabricated by a process comprising:

compacting powder to form a feed electrode, the powder comprising molybdenum;

arc-melting the feed electrode in a processing ambient comprising a vacuum or one or more inert gases, thereby forming a billet; and

mechanically deforming the billet into wire having a diameter less than a diameter of the billet.

7. The part of claim 1 , wherein the density of the part is no less than 99.5% of the theoretical density of molybdenum.

8. A three-dimensional part manufactured by additive manufacturing using a feedstock material comprising a metallic material comprising at least one of niobium, tantalum, rhenium, tungsten, or molybdenum, the part (i) comprising a plurality of layers each comprising solidified metallic material, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the part is no less than 97% of a theoretical density of the metallic material, and wherein a concentration within the part of each of sodium, calcium, antimony, magnesium, phosphorous, and potassium is less than 1 ppm by weight and at least 0.001 ppm by weight.

9. The part of claim 8 , wherein the density of the part is no less than 99% of the theoretical density of the metallic material.

10. The part of claim 8 , wherein the feedstock material comprises wire.

11. The part of claim 8 , wherein the feedstock material comprises arc-melted wire.

12. The part of claim 8 , wherein the feedstock material comprises wire fabricated by a process comprising:

compacting powder to form a feed electrode, the powder comprising the metallic material;

arc-melting the feed electrode in a processing ambient comprising a vacuum or one or more inert gases, thereby forming a billet; and

mechanically deforming the billet into wire having a diameter less than a diameter of the billet.

13. The part of claim 8 , wherein the density of the part is no less than 99.5% of the theoretical density of the metallic material.

14. A three-dimensional part manufactured by additive manufacturing using a feedstock material comprising a metallic material comprising at least one of niobium, tantalum, rhenium, tungsten, or molybdenum, the part (i) comprising a plurality of layers each comprising solidified metallic material, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein (a) a density of the part is no less than 97% of a theoretical density of the metallic material, (b) a concentration within the part of each of sodium, calcium, antimony, magnesium, phosphorous, and potassium is less than 1 ppm by weight and at least 0.001 ppm by weight, and (c) a concentration of oxygen within the part is less than 5 ppm by weight and at least 0.001 ppm by weight.

15. The part of claim 14 , wherein the density of the part is no less than 99% of the theoretical density of the metallic material.

16. The part of claim 14 , wherein the feedstock material comprises wire.

17. The part of claim 14 , wherein the feedstock material comprises arc-melted wire.

18. The part of claim 14 , wherein the feedstock material comprises wire fabricated by a process comprising:

compacting powder to form a feed electrode, the powder comprising the metallic material;

arc-melting the feed electrode in a processing ambient comprising a vacuum or one or more inert gases, thereby forming a billet; and

mechanically deforming the billet into wire having a diameter less than a diameter of the billet.

19. The part of claim 14 , wherein the density of the part is no less than 99.5% of the theoretical density of the metallic material.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2026
From: H.C. STARCK SOLUTIONS COLDWATER, LLC
To: ELMET TECHNOLOGIES, LLC
Reel/Frame 073679/0616 →
SECURITY INTEREST Recorded Nov 6, 2023
From: H.C. STARCK SOLUTIONS COLDWATER, LLC; H.C. STARCK SOLUTIONS EUCLID, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 065472/0843 →
CHANGE OF NAME Recorded Nov 1, 2023
From: COLDWATER FACILITY HOLDING, LLC
To: H.C. STARCK SOLUTIONS COLDWATER, LLC
Reel/Frame 065415/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2023
From: H.C. STARCK INC.
To: COLDWATER FACILITY HOLDING, LLC
Reel/Frame 065402/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2017
From: STAWOVY, MICHAEL THOMAS
To: H.C. STARCK INC.
Reel/Frame 041486/0598 →
Cited By (1)
US 12,715,033