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NR0220 Micro Silicon Nitride (α-Si3N4) Powder (CAS No. 12033-89-5)

Catalog No. NR0220
CAS Number 12033-89-5
APS 800μm, or customized
Molecular Weight 140.2833
Form Gray powder
Purity 99.9%
Orientation α Phase

Micro Silicon Nitride (α-Si3N4) (CAS No. 12033-89-5) is a kind of gray powder with a chemical formula of Si3N4 and a molecular weight of 140.2833. Stanford Advanced Materials (SAM) offers high-quality Nano Materials with competitive pricing.

Related products: Micro Titanium Carbide, Titanium Powder for Thermal Spraying, Nano Boron Carbide

The estimated delivery time of 7 to 14 days applies to standard powders. For other products, delivery times may vary.

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Micro Silicon Nitride (α-Si3N4) Powder (CAS No. 12033-89-5)
Micro Silicon Nitride (α-Si3N4) Powder (CAS No. 12033-89-5)
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This Item
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CAS Number
12033-89-5
APS
800μm, or customized
Molecular Weight
140.2833
Form
Gray powder
Purity
99.9%
Orientation
α Phase
 
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Purity
99.9%
Morphology
Irregular shape
APS
3μm
Color
Black
 
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CAS Number
12069-32-8
Chemical Formula
B4C
APS
60nm
Form
Black powder
Purity
99.9%
 
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Composition
B4C
Powder Size
≤10 μm, or customized
Appearance
Black Powder

FAQ

What is the difference between α-Si₃N₄ and β-Si₃N₄?

They are two crystalline forms of silicon nitride. α-Si₃N₄ is stable at lower temperatures and offers better thermal shock resistance and electrical insulation, while β-Si₃N₄ is commonly used as a high-temperature stable structural material. The choice depends on specific application requirements.

What are the suitable application fields for α-Si₃N₄?

It is widely used in high-performance cutting tools, bearings, automotive engine components (such as turbochargers), aerospace parts, and electronic insulating substrates. It is particularly suitable for applications requiring high temperature resistance, wear resistance, and electrical insulation.

How is its heat resistance?

α-Si₃N₄ performs better at high temperatures than most metals, with good oxidation and creep resistance. Its low coefficient of thermal expansion enables it to withstand severe thermal shock. At high temperatures, a self-healing silica layer can form on its surface.

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    Size

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