Product Properties
Downloads & Resources
| Resource Type | Link |
|---|---|
| Safety Data Sheet (SDS) | 99% Alumina MSDS-Innovacera |
| Technical Data Sheet (TDS) | 05-99 Alumina Ceramic Material Properties-SU0207 |
| Catalogue | 99% Alumina Crucible(EN) |
Product Details
This square 99% high-purity alumina crucible is specially designed for excellent thermal stability, chemical corrosion resistance, and mechanical strength. Adopting precise dimensional design is an ideal choice for laboratory experiments, high-temperature industrial processes, and material synthesis.
Specification:
- Maximum operating temperature: 1600 ℃
- Dimensions (length x width x height): 60.58*60.40*20.24mm
- Wall thickness: 4.34mm
Core Features:
- Material:99% alumina (Al2O3) – a high-purity material that enables experiments and production processes without impurity pollution
- Shape: cylindrical – optimized design to ensure even heating
- Temperature resistance: Suitable for various high-temperature application scenarios
- Chemical stability: acid resistance, alkali resistance, and resistance to molten metal corrosion
- Precision dimensions: strict manufacturing, adaptable to various equipment, strong consistency in installation and use
- Application scenarios: laboratory experiments, metallurgical processes, sintering, chemical synthesis, and other industrial high-temperature scenarios
These alumina crucibles can provide long-term durability and reliable performance for all processes that require high-strength, high thermal stability ceramic containers. We also offer crucible products in various shapes, sizes, and materials to meet the diverse needs of different laboratories and industrial applications.
INNOVA Supplies also provides custom crucibles as client’s requirements.
For more details, pls contact info@innovasupplies.com.
Frequently Asked Questions
Due to the thermal expansion properties of the alumina material, heating or cooling too rapidly can cause thermal shock and lead to cracking. To extend the product life, it is recommended to warm up and cool down as slowly as possible, avoiding direct exposure to temperature extremes.
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