R-Series Cobalt Powder
It utilizes a high purity precursor that produces a rod-like morphology ranging in particle size from 0.9 – 1.5 microns in size. It has outstanding chemical purity, with low oxygen and carbon levels.
Applications:
Hard metal, diamond tools, powder metal alloys and components, batteries, and specialty chemicals.
Technical Data:-
Grade | Oxygen, wt.% | Carbon, ppm | Nickel, ppm | Copper, ppm | Iron, ppm | Calcium, ppm | Zinc, ppm | FSSS, µm |
---|---|---|---|---|---|---|---|---|
R-125 | <0.6 | <500 | <100 | <50 | <100 | <50 | <20 | 1.0-1.5 |
Grade | R-125 |
Oxygen, wt.% | <0.6 |
Carbon, ppm | <500 |
Nickel, ppm | <100 |
Copper, ppm | <50 |
Iron, ppm | <100 |
Calcium, ppm | <50 |
Zinc, ppm | <20 |
FSSS, µm | 1.0-1.5 |
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Key Benefits:
- Reduced Milling Times
- Improved Isotropic Shrinkage
- Less Cobalt Pooling
- Reduced Outgassing
- Improved Micro-structural Homogeneity
Technical Data:-
Grade | Oxygen, wt.% | Carbon, ppm | Nickel, ppm | Copper, ppm | Iron, ppm | Calcium, ppm | Zinc, ppm | FSSS, µm |
---|---|---|---|---|---|---|---|---|
S-80 | <0.7 | <500 | <100 | <50 | <100 | <50 | <20 | 0.8-1.1 |
S-120 | <0.6 | <400 | <100 | <50 | <100 | <50 | <20 | 1.1-1.5 |
S-320 | <0.45 | <300 | <100 | <50 | <100 | <50 | <20 | 3.0-4.5 |
Grade | S-80 |
Oxygen, wt.% | <0.7 |
Carbon, ppm | <500 |
Nickel, ppm | <100 |
Copper, ppm | <50 |
Iron, ppm | <100 |
Calcium, ppm | <50 |
Zinc, ppm | <20 |
FSSS, µm | 0.8-1.1 |
Grade | S-120 |
Oxygen, wt.% | <0.6 |
Carbon, ppm | <400 |
Nickel, ppm | <100 |
Copper, ppm | <50 |
Iron, ppm | <100 |
Calcium, ppm | <50 |
Zinc, ppm | <20 |
FSSS, µm | 1.1-1.5 |
Grade | S-320 |
Oxygen, wt.% | <0.45 |
Carbon, ppm | <300 |
Nickel, ppm | <100 |
Copper, ppm | <50 |
Iron, ppm | <100 |
Calcium, ppm | <50 |
Zinc, ppm | <20 |
FSSS, µm | 3.0-4.5 |
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Coarse Cobalt Powder S1
It is used to meet your specific needs and applications. It utilizes high purity precursors to form a product with spherical morphology. It is designed for the following applications: battery, chemical manufacturing, metal carboxylate production and powder metal parts production.
Key Benefits:
- Easy to dissolve
- Good flowability
- High purity
- Reduced Outgassing
- Improved Micro-structural Homogeneity
Technical Data:-
Grade | Oxygen, wt.% | Carbon, ppm | Nickel, ppm | Copper, ppm | Iron, ppm | Calcium, ppm | Zinc, ppm | FSSS, µm |
---|---|---|---|---|---|---|---|---|
S1 | <0.7 | <1500 | <50 | <50 | <50 | <100 | <50 | <20 |
Grade | S1 |
Oxygen, wt.% | <0.7 |
Carbon, ppm | <1500 |
Nickel, ppm | <50 |
Copper, ppm | <50 |
Iron, ppm | <50 |
Calcium, ppm | <100 |
Zinc, ppm | <50 |
FSSS, µm | <50 |
Physical | Typ. |
---|---|
+50 mesh % | 4.1 |
+100 mesh % | 44.5 |
+200 mesh % | 33.7 |
+325 mesh % | 14.5 |
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