High Purity Tungsten Boride WB2 Powder CAS 12007-09-9, 99%

Tungsten boride, also known as black powder, has the following physical properties: molecular Formula WB2, metal conductivity. Purity>99%
Particle size range: 10-20um

About Tungsten Boride WB2:
Tungsten-boride consists of tungsten ad boron. They are characterized by their high hardness. Vickers hardness is 20GPa of WB2 and 30GPa of WB4 tungsten diboride.
Tungsten boride density is 10.77 and tungsten boride melting point is about 2900degC. It is not a degrader of water, but can degrade aqua regina.
It is made by heating boron-tungsten powders to high temperatures.
Tungsten-boride possesses comprehensive properties including a high melting temperature, high hardness, and chemical stability. It is a superhard, high melting-point material. This material is important for the military as it's bulletproof.
The rich phase diagrams of tungsten-alloys and the structure of the different phases have been changing for more than fifty years.
The highest boron is WB4, with a three-dimensional grid of boron molecules. We combine the thermodynamics stability with the principle calculation and study the thermodynamics stability and mechanical properties.
The highest boride used to identify tungsten, WB3, should consist of two-dimensional plane grids composed of boron. It was discovered that the shear modus in the tungsten borate system transformed its energy of formation. It was found that mechanical properties were closely related to thermodynamic stability.
A high temperature and pressure sintering process is used to achieve the dense tungsten-diboride due to WB2's free diffusion coefficient. This reduces the amount of tungsten diboride and increases its cost.
The boron content in tungsten powder is not known, so it's difficult to make WB2 from boron and tungsten powder.
It can also cause hypoborate to form during the sintering phase, and compact bulk materials with WB2 being the main phase will not be possible.

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How is Tungsten Boride WB2 produced?
1. After mixing and grinding the raw materials tungsten and boran, heat them and react above 1400°C to get tungsten boreide. Continue the reaction to get W2B and finally cool and crush it to obtain the finished product.
2. Tungsten powder and stoichiometric boran powder are mixed at a ratio of 2:1 in a vacuum/argon atmosphere, at temperatures between 1200degC and 1300degC. This produces two tungsten bore.
3. Use the solid-phase method. Tungsten boride can be prepared by combining metal tungsten with boron. The reaction formula can be found below. The stoichiometric metal powder tungsten is mixed with elemental boron, then ground and molded. It is heated and reacted above 1400degC in order to get tungsten Boride. Continue the reaction, resulting in W2B. The product is obtained by cooling and crushing the W2B.

Tungsten boride WB2 powder Feature

Tungsten boride powder Molecular formula: WB2

Tungsten boride powder CAS NO:12007-09-9

Tungsten boride powder density:10.77g/cm3

Tungsten boride powder melting point:2900

Tungsten Boride powder Solubility & Stability

It does not dissolve in water. 100 can be decomposed by chlorine gas.

Tungsten boride powder Purity: >99%

Tungsten boride powder Particle size: 10-20um


Tungsten Boride
Wear-resistant layer for wear parts.
WB compounds exhibit high melting points, high hardness, good conductivity, and wear resistance. They are also resistant to corrosion, high temperature, and wear. The compounds are also used for structural materials, wear resistant materials, and electrodes. Materials and many other fields. Tungsten boride can be produced through the reaction between metal tungsten (metal tungsten) and element boron (element boron) heated in an electric oven. It has all the properties of the W-B series compounds, and it has a wide range of applications in the future.
1) Prepare the workpiece with the tungsten rich coating. This includes a workpiece base, a tungsten layer and a gradient layer of tungsten.
2) To produce a hard material made of tungsten Diboride, first a mechanochemical process is used at room temperature to synthesize the tungsten Diboride powder using high-purity W and B powders. In argon, under a protective environment, high-temperature Sintering is then performed to densify this synthesized powder into a bulk material. This method is able to obtain compact tungsten-diboride bulk material by sintering at normal temperatures and pressure. The tungsten-diboride bulk material is characterized by excellent properties including good stability, hardness and neutron absorption. It can be used for a wide variety of purposes, including cutting tools, corrosion-resistant material, and new shielding material.

Tungsten Boride Powder:
As the dampness of the room will affect both WB2 dispersion properties and its use, tungsten Boride WB2 should be stored in a dry and cool environment. WB2 powder must also not be exposed to stress.

Packaging & Shipping tungsten boride powder WB2:
The quantity of WB2 powder and the type of packaging we use will determine which one is best for you.
Tungsten boride powder WB2 packing: Vacuum packaging, 100g,500g or 1kg/bag; 25kg/barrel. Or as per your request.
Tungsten boride powder WB2 shipping: Could be shipped by air or sea as soon after payment receipt.



Technology Co. Ltd., () is an established global chemical material manufacturer and supplier with over 12 years' experience in the production of high-quality nanomaterials. These include boride powders, graphite or nitride particles, as well as sulfide or sulfide particles, for 3D printing.
You can contact us to send an inquiry if you are interested in high quality tungsten-boride powder. (brad@ihpa.net)

Tungsten Diboride Properties

Alternative Names tungsten boride, WB2 powder, tungsten boride WB2
CAS Number 12007-09-9
Compound Formula WB2
Molecular Mass 205.5
Appearance Gray Black Powder
Melting Point 2365 degC
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Vickers Hardness 20 GPa
Exact Mass 205.969544 g/mol
Tungsten Diboride Health & Safety Information
Sign Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information N/A

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