High-density, crack-free metallic parts
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.
1. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers comprising one or more of molybdenum, niobium, tantalum, rhenium, or tungsten, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 97% of a theoretical density, and wherein a concentration within the crucible of each of sodium, silicon, calcium, antimony, magnesium, phosphorous, sulfur, and potassium is less than 20 ppm by weight and at least 0.001 ppm by weight.
2. The crucible of claim 1 , wherein, in each layer, one or more of molybdenum, niobium, rhenium, or tungsten is the majority material.
3. The crucible of claim 1 , wherein each layer consists essentially of one or more of molybdenum, niobium, tantalum, rhenium, or tungsten.
4. The crucible of claim 1 , wherein each layer consists essentially of one or more of molybdenum, niobium, rhenium, or tungsten.
5. The crucible of claim 1 , wherein the concentration within the crucible of each of sodium, silicon, calcium, antimony, magnesium, phosphorous, sulfur, and potassium is less than 10 ppm by weight and at least 0.001 ppm by weight.
6. The crucible of claim 1 , wherein the concentration within the crucible of each of sodium, silicon, calcium, antimony, magnesium, phosphorous, sulfur, and potassium is less than 5 ppm by weight and at least 0.001 ppm by weight.
7. The crucible of claim 1 , wherein a concentration within the crucible of oxygen is less than 20 ppm by weight and at least 0.001 ppm by weight.
8. The crucible of claim 1 , wherein a concentration within the crucible of oxygen is less than 10 ppm by weight and at least 0.001 ppm by weight.
9. The crucible of claim 1 , wherein a concentration within the crucible of oxygen is less than 5 ppm by weight and at least 0.001 ppm by weight.
10. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 97% of a theoretical density, wherein a concentration within the crucible of sulfur is less than 20 ppm by weight and at least 0.001 ppm by weight, and wherein, in each layer, one or more of molybdenum, niobium, tantalum, rhenium, or tungsten is the majority material.
11. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers comprising one or more of molybdenum, niobium, tantalum, rhenium, or tungsten, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 97% of a theoretical density, wherein a concentration within the crucible of sodium is less than 20 ppm by weight and at least 0.001 ppm by weight, and wherein a concentration within the crucible of at least one of silicon, calcium, phosphorous, or sulfur is less than 20 ppm by weight and at least 0.001 ppm by weight.
12. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers comprising one or more of molybdenum, niobium, tantalum, rhenium, or tungsten, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 97% of a theoretical density, and wherein a concentration within the crucible of antimony is less than 20 ppm by weight and at least 0.001 ppm by weight.
13. The crucible of claim 12 , wherein a concentration within the crucible of silicon is less than 20 ppm by weight and at least 0.001 ppm by weight.
14. The crucible of claim 12 , wherein a concentration within the crucible of calcium is less than 20 ppm by weight and at least 0.001 ppm by weight.
15. The crucible of claim 12 , wherein a concentration within the crucible of magnesium is less than 20 ppm by weight and at least 0.001 ppm by weight.
16. The crucible of claim 12 , wherein a concentration within the crucible of phosphorous is less than 20 ppm by weight and at least 0.001 ppm by weight.
17. The crucible of claim 12 , wherein a concentration within the crucible of potassium is less than 20 ppm by weight and at least 0.001 ppm by weight.
18. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers comprising one or more of molybdenum, niobium, tantalum, rhenium, or tungsten, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 97% of a theoretical density, wherein a concentration within the crucible of sulfur is less than 20 ppm by weight and at least 0.001 ppm by weight, and wherein a concentration within the crucible of potassium is less than 20 ppm by weight and at least 0.001 ppm by weight.
19. A refractory crucible manufactured by additive manufacturing using a metallic feedstock material, the crucible (i) comprising a plurality of layers comprising one or more of molybdenum, niobium, tantalum, rhenium, or tungsten, (ii) being free of gaps between successive layers, and (iii) being free of cracks, wherein a density of the crucible is no less than 99% of a theoretical density, and wherein a concentration within the crucible of each of silicon and sulfur is less than 20 ppm by weight and at least 0.001 ppm by weight.
20. The crucible of claim 19 , wherein, in each layer, one or more of molybdenum, niobium, rhenium, or tungsten is the majority material.