Silicon carbide CAS#409-21-2

Silicon carbide CAS#409-21-2

High Hardness & Wear Resistance:Extremely hard material with excellent abrasion resistance.


Corrosion & Slag Resistance:Performs well against molten slag and harsh environments.


Thermal Shock Resistance:Withstands rapid temperature changes without cracking.


High Conductivity & Multiple Structures:Offers good electrical conductivity and various polytypes for versatile applications.


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product description

Products Description of Silicon carbide CAS#409-21-2

Silicon carbide, a hard covalent material, is made by carbothermal reduction of silica at >2200 °C in electric furnaces. It features outstanding abrasion, corrosion and thermal shock resistance, with moderate electrical conductivity and oxidation susceptibility. It exists in hundreds of polytypes, mainly cubic β-SiC and hexagonal/rhombohedral α-SiC.


Product Application of Silicon carbide CAS#409-21-2

Silicon carbide, a rare fully synthetic refractory mineral, has four main bonding systems: oxide, Si₂ON₂, Si₃N₄ and self-bonded. The first three are permeable and prone to bond-phase corrosion, while self-bonded SiC is impermeable with only surface corrosion. Produced by reaction bonding or sintering, self-bonded variants have similar chemical resistance but distinct physical properties.

Parameters


Melting point2700 °C (lit.)
bulk density0.069g/cm3
density3.22 g/mL at 25 °C (lit.)
refractive index2.65
solubilitySoluble in molten sodium hydroxide, potassium hydroxide and in molten iron.
formnanopowder
colorGreen
Specific Gravity3.22
Resistivity107–200 (ρ/μΩ.cm)
Water SolubilitySoluble in molten alkalis (NaOH, KOH) and molten iron. Insoluble in water.
Hydrolytic Sensitivity1: no significant reaction with aqueous systems
Crystal StructureCubic, Sphalerite Structure - Space Group F(-4)3m
Merck148,492
Exposure limitsACGIH: TWA 10 mg/m3; TWA 3 mg/m3; TWA 0.1 fiber/cm3
OSHA: TWA 15 mg/m3; TWA 5 mg/m3
NIOSH: TWA 10 mg/m3; TWA 5 mg/m3
Stability:Stability
Cosmetics Ingredients FunctionsABRASIVE
InChIKeyHBMJWWWQQXIZIP-UHFFFAOYSA-N
Knoop Microhardness3000, at 25°C
Shear Modulus180 GPa, Calculated
Modulus of Elasticity459 - 476 GPa
Poissons Ratio0.14, sintered
NIST Chemistry ReferenceSilicon monocarbide(409-21-2)
IARC2A (Vol. 111) 2017
EPA Substance Registry SystemSilicon carbide (409-21-2)


Safety Information


Hazard CodesXi
Risk Statements36/37/38
Safety Statements26-36
OEBB
OELTWA: 10 mg/m3 (total)
WGK Germany3
RTECSVW0450000
TSCAYes
HS Code28492000
Hazardous Substances Data409-21-2(Hazardous Substances Data)


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Shipping And Transportation

Delivery Time

Inventory 2-3 working days New manufacturing 7-10 working days

Mode of Transportation
1. By Air, fast but expensive.
2. By Sea, usual and economy.
3. By Train, suit for middle Asia countries.
4. By Express, suit for small package.
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Chemical buyers evaluate more than price and delivery time. Clear specifications, matching batch documents, consistent packaging information, and traceable logistics all affect customs clearance, warehouse inspection, and production use.
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3. What Are the Differences Between COA, SDS, and TDS?
A COA is a batch-specific Certificate of Analysis showing test items, required ranges, and actual results. It is mainly used for quality verification and incoming inspection.
An SDS provides safety, handling, storage, emergency, and transportation information. A TDS describes typical product properties, technical parameters, and application guidance. Buyers should confirm the required document version, language, and applicable standards before placing an order.


4. Key Conditions to Confirm Before International Chemical Transportation
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