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Rhenium Crucible
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Rhenium Crucible

Rhenium Crucible

CAS No.: 7440-15-5

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Features

CAS No.:

7440-15-5

Linear Formula:

Re

Purity:

99.99%

Density:

Min. 18.8g/cc

Melting Point:

3180 °C

Shape:

Cylinder, Bowl, Tapered, Square, Rectangular, Boat or Customized

Wall Thickness:

3-6 mm

Capacity:

Up to 2000ml

Size:

10-500mm OD x 10-600mm H, or Customized

Rhenium Crucible Description

Rhenium crucible is made of pure rhenium powder through a special molding method. It can withstand over 2000℃ high temperature. It is mainly used in rare earth elements and gem single crystal growth. Due to its high melting point, good compatibility, excellent oxidation resistance and creep resistance, rhenium crucible is especially favored by gem manufacturers.

SSC specializes in supplying rhenium crucibles with a variety of shapes and dimensions and wall thicknesses. Custom configurations are available. The purity of our rhenium crucible is greater than 99.99%.

Rhenium Crucible Applications and Related Industries

● Anti-corrosion container

● Nuclear reaction

● Ultra-high evaporation

● Single crystal growth of rare earth elements and gemstones

● Refractory Metals & Alloys

● Thin Film Deposition

● Research & Laboratory

Packaging of Rhenium Crucible

Our rhenium crucibles are carefully handled to minimize damage during storage and transportation and to preserve the quality of our products in their original condition.

Chemical Identifiers

Linear Formula

Re

MDL Number

MFCD00011195

EC No.

231-124-5

Beilstein/Reaxys No.

N/A

Pubchem CID

23947

SMILES

[Re]

InchI Identifier

InChI=1S/Re

InchI Key

WUAPFZMCVAUBPE-UHFFFAOYSA-N

Rhenium Crucibles Properties (Theoretical)

Molecular Weight

186.21

Appearance

Silvery-gray

Melting Point

3180 °C

Boiling Point

5627 °C

Density

21.02 gm/cc

Solubility in H2O

N/A

Electrical Resistivity

19.3 microhm-cm @ 20 °C

Electronegativity

1.9 Paulings

Heat of Fusion

7.9 Cal/gm mole

Heat of Vaporization

152 K-Cal/gm atom at 5627 °C

Poisson's Ratio

0.3

Specific Heat

0.0329 Cal/g/K @ 25 °C

Tensile Strength

80,000 psi

Thermal Conductivity

0.480 W/cm/K @298.2 K

Thermal Expansion

6.2 µm/(m·K)

Vickers Hardness

2450 MPa

Young's Modulus

463 GPa

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