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Black Round Sic Crucible Oxidation Resistant Large Crucible For Melting Aluminum

Product Details

Place of Origin: China

Brand Name: Baidun

Model Number: HL766

Payment & Shipping Terms

Minimum Order Quantity: 1PC

Price: 467USD/PCS

Packaging Details: Export Wooden Packing

Delivery Time: 25-30 Days

Payment Terms: TT

Supply Ability: 5000PCS /MOUTCH

Get Best Price
Highlight:

Round SiC Crucible

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SiC Crucible Oxidation Resistant

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Round Large Crucible For Melting Aluminum

Name:
SiC Crucible
Material:
Silicon Carbide
Composition:
High Pure
Density:
2.21-2.25g/cm3
Shape:
Round
Capacity:
1-100kg
Chemical Resistance:
High
Emperature Resistance:
Up To 1600°C
Slag Adherence:
Low
Name:
SiC Crucible
Material:
Silicon Carbide
Composition:
High Pure
Density:
2.21-2.25g/cm3
Shape:
Round
Capacity:
1-100kg
Chemical Resistance:
High
Emperature Resistance:
Up To 1600°C
Slag Adherence:
Low
Black Round Sic Crucible Oxidation Resistant Large Crucible For Melting Aluminum
Black Round SiC Crucible - Oxidation Resistant Large Crucible For Melting Aluminum
Product Specifications
Attribute Value
Name SiC Crucible
Material Silicon Carbide
Composition High Pure
Density 2.21-2.25g/cm³
Shape Round
Capacity 1-100kg
Chemical Resistance High
Temperature Resistance Up to 1600°C
Slag Adherence Low
Product Overview
Our conventional round crucible is engineered for high oxidation resistance during aluminum melting processes. Made from premium silicon carbide, it offers exceptional thermal performance and durability for industrial applications.
Key Features
  • Application: Melting and casting of metals
  • Suitable for: Induction furnaces
  • Type: Heat stability
  • Color: Black
Performance Benefits
  • Long service life - 2-5 times longer than standard clay-graphite crucibles
  • Fast thermal conductivity for efficient heating
  • High corrosion resistance against molten metals
  • Low slag adherence reduces thermal resistance
  • Broad temperature range: 400°C to 1600°C
Technical Advantages
Our crucibles feature dense material structure with minimal porosity for rapid heat transfer. The high-pressure molding technique ensures robust strength at elevated temperatures with excellent load-bearing capacity. Special material formulations provide superior oxidation resistance and metal preservation properties.
The crucible's thermal efficiency significantly reduces fuel consumption and emissions, while its optimized resistivity minimizes reactive power losses in induction heating applications.
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