High-Purity Alumina Tapered Bottom Crucible - 63.73*63.73*61.36mm
| Formula | Al₂O₃ | |
|---|---|---|
| Forms | ||
| Materials | ||
| Purity | 99% | |
| CAS Number | 1344-28-1 | |
| Commodity | Crucible | |
| Model | LW-CR-63.73-61.36-3 | |
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
Our 99% alumina tapered round-bottom ceramic crucibles are designed for excellent thermal stability, chemical resistance, and reliable performance in high-temperature environments. The tapered body and rounded bottom structure help promote uniform heat distribution and efficient material processing, making these crucibles suitable for laboratory, research, and industrial applications.
Specification:
- Max. Working Temperature: 1600℃
- Size (L*W*H): 63.73*63.73*61.36mm
- Wall Thickness: 2.67mm
Key Features:
- Material: 99% Al₂O₃ (Alumina) – high purity for reduced contamination
- Shape: Tapered round-bottom design for improved heating efficiency and material handling
- High Temperature Resistance: Suitable for demanding thermal processing applications
- Chemical Stability: Resistant to acids, alkalis, oxidation, and corrosion
- Mechanical Strength: Durable ceramic structure with excellent wear resistance
- Precision Manufacturing: Consistent dimensions and smooth surface finish for reliable use
- Applications: Material synthesis, powder processing, sintering, chemical analysis, metallurgical testing, and laboratory heating processes
These alumina ceramic crucibles are widely used in laboratories, research institutes, and industrial thermal processing systems where high purity and temperature resistance are essential. We also offer a wide range of crucibles in different shapes, sizes, and material types to meet diverse laboratory and industrial requirements.
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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