Rhenium Spherical Powder

Obtained by:
Plasma ICP
Common uses:
Material for additive manufacturing of parts subjected to extreme conditions of temperature, wear and stress that can induce creep deformation. Ideal for aerospace applications, energy and high temperature components.
Produced in the following facilities:
MolymetNos
Rhenium (Re)
%
99.9 Min
Iron (Fe)
ppm
50 Max
Oxygen (O)
ppm
300 Max
Tungsten (W)
ppm
30 Max
Nickel (Ni)
ppm
10 Max
Aluminium (Al)
ppm
5 Max
Titanium (Ti)
ppm
5 Max
Vanadium (V)
ppm
5 Max
Others
%
0.03 Max
As customer request
Appearance
Fine metallic powder
Particle size
As customer request. Reference: -53 +20 µm.
Obtained by:
Recovered as a by-product of molybdenum concentrates processing
Common uses:
Common uses: Perrhenic acid is a precursor to a variety of homogeneous catalysts, some of which are promising in niche applications
Produced in the following facilities:
MOLYMETNOS
Rhenium:
55,70%
typical
Calcium:
4 ppm
typical
Chromium:
2 ppm
typical
Copper:
1 ppm
typical
Iron:
1 ppm
typical
Molybdenum:
15 ppm
typical
Nickel:
3 ppm
max.
Potassium:
10 ppm
typical
Sulfur:
3 ppm
max.
Sodium:
1 ppm
typical
Tungsten:
10 ppm
max.
Flask
1.5 lb Re
Appearance
transparent liquid
Obtained by:
byproduct recovered from molybdenum concentrated processing.
Common uses:
manufacture of bimetallic Pt/Re reforming catalysts, production of rhenium metal and perrhenic acid.
Produced in the following facilities:
MOLYMETNOS
Re:
69.40 %
typical
Total metallic impurities:
100 ppm
max.
Plastic flask
10 flasks per cardboard box (palletizing is optional, upon request)
1 kg Re (approx. 1.44 kg) / 2 pounds Re (approx. 2.88 pounds)
-
-
Appearance
White crystalline powder
Obtained by:
Hydrogen reduction
Common uses:
High-temperature applications in electronics, furnace, aerospace industries and implant materials.
Produced in the following facilities:
MOLYMETNOS
Purity (*):
99.98%
min.
Rhenium (**)
10.00% - 55.50%
min.
Al - Aluminium
1 ppm
max.
As - Arsenic
1 ppm
max.
Bi - Bismuth
1 ppm
max.
Ca - Calcium
5 ppm
max.
Cd - Cadmium
1 ppm
max.
Cr - Chromium
5 ppm
max.
Cu - Copper
1 ppm
max.
Fe - Iron
15 ppm
max.
K - Potassium
45 ppm
max.
Mg - Magnesium
1 ppm
max.
Mn - Manganese
1 ppm
max.
Na - Sodium
10 ppm
max.
Ni - Nickel
5 ppm
max.
P - Phosphorus
5 ppm
max.
Pb - Lead
5 ppm
max.
Sb - Antimony
20 ppm
max.
Se - Selenium
1 ppm
max.
Si - Silicon
5 ppm
max.
Sn - Tin
1 ppm
max.
Tl - Thallium
1 ppm
max.
V - Vanadium
5 ppm
max.
W - Tungsten
55 ppm
max.
Zn - Zinc
1 ppm
max.
Zr - Zirconium
5 ppm
max.
C - Carbon
40 ppm
max.
O - Oxigen
6000 ppm
max.
Plastic flask (small)
10 flasks per cardboard box
1 kg Mo Re Alloy / 2 lbs Mo Re Alloy
Plastic flask (large)
4 flasks per cardboard box
10 kg Mo Re Alloy / 22 lbs Mo Re Alloy
Appearance
Fine metallic powder.
Particle size
As customer request.
Obtained by:
hydrogen reduction of Ammonium Perrhenate.
Common uses:
as an additive to superalloys, production of sheet foil, strip or wire for various industrial applications.
Produced in the following facilities:
MOLYMETNOS
Purity:
99.97 %
min.
Sulphur:
30 ppm
max.
Carbon:
50 ppm
max.
Nitrogen:
100 ppm
max.
Oxygen:
2,500 ppm
max.
Total metallic impurities:
150 ppm
max.
Plastic flask (small)
10 flasks per cardboard box
1 kg Re / 2 pounds Re
-
-
Plastic flask (large)
4 flasks per cardboard box
10 kg Re / 22 pounds Re
-
-
Appearance:
fine metallic powder
Obtained by:
sintering rhenium metal powder.
Common uses:
as an additive to superalloys for components put under high temperatures in aerospace and power generation turbines.
Produced in the following facilities:
MOLYMETNOS
Purity:
99.98 %
min.
Sulphur:
30 ppm
max.
Carbon:
50 ppm
max.
Nitrogen:
100 ppm
max.
Oxygen:
600 ppm
max.
Total metallic impurities:
100 ppm
max.
Plastic flask (small)
10 flasks per cardboard box
1 kg Re / 2 pounds Re
-
-
Plastic flask (large)
4 flasks per cardboard box
10 kg Re / 22 pounds Re
-
-
Briquette size:
(8 x 12 x 7) mm approx. (0.75 x 0.5 x 0.25) inches approx.
Appearance:
pillow shape
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