Spherical Pure Molybdenum Mo metal Powder

Princeton Powder is a leading supplier of high-purity Molybdenum metal powder, offering particle sizes ranging from nano powder to 325 mesh and 15-53 µm tantalum micron powder. Our spherical Molybdenum powder, with low oxygen content, is widely used for additive manufacturing (3D printing) application.

Princeton Powder is a leading supplier of Molybdenum (Mo) powder. Our pure Molybdenum powder is for sale at a competitive price in the USA.

Formula

Molybdenum

Synonyms

Molybdenum spherical particles, Molybdenum spherical powders, Molybdenum Powder, Molybdenum thermal spray powder, Molybdenum gas atomized powder

Appearance

Black Powder

Particle Size

-100~+325 mesh, can be customized upon request

Melting Point

2620 °C

Density

 10.2 g/cm 3

CAS No.

7439-98-7

Purity

99%~99.95%

Description of Molybdenum (Mo) Powder

Molybdenum (Mo) powder is a dense, gray metallic powder with a high melting point of about 2,623°C. It is known for its excellent strength and stability at elevated temperatures. Used in electronics, aerospace, and steel production, it is processed through powder metallurgy and additive manufacturing to create high-performance components.

Chemical Composition of Spherical Mo Powder

3N-Mo powder

TypeGrain size (μm)Oxygen(%)Fe(%)NVR(%)Mo(%)
TMO-100.8 to 1.7≦1.0≦0.01≦0.1≧99.9
TMO-201.8 to 2.7≦1.0≦0.01≦0.1≧99.9
TMO-302.8 to 3.7≦0.1≦0.01≦0.1≧99.9
TMO-403.8 to 4.7≦0.1≦0.01≦0.01≧99.98
TMO-504.8 to 6.0≦0.1≦0.01≦0.01≧99.98

Mo is the remainder obtained by subtracting Fe and NVR from 100.

4N-Mo powder

TypeGrain size(μm)Oxgen(%)Mo(%)
4N-Mo3.5 to 5.5≦0.1≧99.99

Mo is the remainder obtained by subtracting the 13 elements in the Table below from 100.

Particle Size distribution Spherical Molybdenum (Mo) Powder

0-15 μm, 15-53 μm, 45-105 μm, 45-150 μm Molybdenum Spherical Powder is available (Various particle sizes can be customized)

3D Printing Spherical Powder Tantalum Ta

Application of Spherical Molybdenum (Mo) Powder

  • Additive Manufacturing (3D Printing): pherical Molybdenum Powder is ideal for 3D printing technologies such as Selective Laser Melting (SLM) and Electron Beam Melting (EBM). The spherical particles enhance flowability, which is crucial for precise deposition during the printing process.
  • Powder Metallurgy: Spherical Molybdenum Powder is extensively used in powder metallurgy to produce components that require a high degree of precision and density.
  • Aerospace and Defense: Spherical Molybdenum Powder is utilized in the aerospace and defense industries for manufacturing parts that require exceptional performance under extreme conditions.
  • High-Temperature Applications: Molybdenum’s excellent high-temperature properties make it suitable for high-temperature applications such as furnace parts, high-performance coatings, and electrothermal applications.
  • Wear-Resistant Coatings: Molybdenum powder is often used in the production of wear-resistant coatings for tools, machinery, and cutting equipment.

Spherical Molybdenum (Mo) Powderr Reference

Preparation of highly uniform molybdenum powder by the short-process reduction of molybdenum trioxide with hydrogen

  • A novel short-process for preparing molybdenum powder is proposed in this paper in which the hydrogen flow direction is changed from traditional top diffusion to bottom blowing. The results showed that the short-process prevented sintering of the MoO2 reduction product in the first stage and permitted the continuous reduction of MoO3 by hydrogen without crushing or screening. 

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Our standard powder particle sizes are in the range of – 325 mesh, – 100 mesh, 10-50 microns and submicron (< 1 micron).

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