Neodymium Metal

Neodymium Metal

CAS #:  7440-00-8

Linear Formula: Nd

EC No.: 231-109-3

Neodymium is a gray and active metal with a density of 6.8g/cm3 (square crystal), a melting point of 1024 ℃, and a boiling point of 3100 ℃. It is one of the most active rare earth metals. It has Paramagnetism. It can quickly darken in the air and generate oxides; React slowly in cold water and quickly in hot water.

Application Area:

1. Neodymium Metal is mainly used in neodymium iron boron magnetic materials.

2. Indirectly added to manufacturing special alloys. Firestone, spheroidizing agent, etc

Product Series

PRODUCT

Product Code

SAFETY DATA

TECHNICAL DATA

Neodymium Metal  99.9%

ET-NdM-01


Neodymium Metal 99.9%

Neodymium Metal  99.99%

ET-NdM-01

Neodymium Metal 99.99%

Properties (Theoretical)

Molecular Weight 144.24
Appearance Silvery
Melting Point 1024 °C
Boiling Point 3100 °C
Density 6800 kg/m3
Solubility in H2O N/A
Electrical Resistivity 64.0 microhm-cm @ 25 °C
Electronegativity 1.2 Paulings
Heat of Fusion 1.70 Cal/gm mole
Heat of Vaporization 69 K-Cal/gm atom at 3068 °C
Poisson's Ratio ( form) 0.281
Specific Heat 0.049 Cal/g/K @ 25 °C
Tensile Strength N/A
Thermal Conductivity 0.165 W/cm/K @ 298.2 K
Thermal Expansion 6.89 g·cm3
Vickers Hardness 343 MPa
Young's Modulus (form) 41.4 GPa

Packaging Specifications

Finished packaging: 50 kg / barrel, 500 kg / tray

Sample packaging: 500 g / bag, 1 kg / bottle


Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Precautionary Statements P261-P305 + P351 + P338
Flash Point Not applicable
Risk Codes N/A
Safety Statements N/A
RTECS Number QO8575000
Transport Information UN 3208 4.3/PG
WGK Germany 3

About Neodymium Metal
About Neodymium Metal

After separating neodymium from other rare earth elements through ion exchange or solvent extraction technology, metallic neodymium can be prepared by metal thermal reduction method. The lithium thermal reduction of rare earth chlorides is different from the Calciothermic reaction of rare earth chlorides. The reduction process of the former is carried out in the gas phase. The lithium thermal reduction reactor is divided into two heating zones, and the reduction and distillation processes are carried out in the same equipment. Anhydrous neodymium chloride is placed in the upper titanium reactor crucible (also known as NdCl3 Still room), the reducing agent lithium is placed in the lower crucible, and then the stainless steel reaction tank is vacuumized to 7Pa before heating. When the temperature reaches 1000 ℃, maintain for a certain period of time to allow NdCl3 vapor to fully react with lithium vapor, and the reduced metal neodymium solid particles fall into the lower crucible. After the reduction reaction is completed, only heat the lower crucible and distill LiCl into the upper crucible. The reduction reaction process usually takes about 10 hours. In order to produce relatively pure neodymium metal, the reducing agent lithium metal needs to use 99.97% high-purity lithium and anhydrous NdCl3 from secondary distillation.

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