Luoyang Anjing Intelligence Equipment es líder mundial en hornos eléctricos de alta temperatura

High Purity Calcium Stabilized Zirconia Crucible
PARÁMETROS DEL PRODUCTO
Descripción
Calcium Stabilized High Purity Zirconia Crucible
Calcium Stabilized High Purity Zirconia Crucible is made from high-purity zirconia (ZrO₂) as the main raw material, with the addition of an appropriate amount of calcium oxide (CaO) for stabilization. It is manufactured through advanced forming technology and high-temperature sintering.
The main components are ZrO₂ + HfO₂ ≥ 95.21%, with a calcium oxide (CaO) content of approximately 3.85%. It exhibits excellent high-temperature stability, resistencia al choque térmico, and chemical inertness. The crucible density reaches 4.1 gramos/cm³, and the maximum operating temperature can reach 2000℃. It is suitable for ultra-high temperature smelting, precious metal analysis, advanced materials research and development, and special industrial high-temperature applications.
Compared to ordinary zirconia, calcium stabilized zirconia crucibles have better phase stability and thermal cycling performance, effectively reducing the risk of cracking due to crystal form changes during high-temperature use. It is an ideal refractory container for demanding high-temperature experiments and industrial applications.
Características del producto
- Calcium-Stabilized Zirconia, Excellent Ultra-High Temperature Performance
Stable high-purity zirconium oxide, ZrO₂+HfO₂≥95.21%, CaO 3.85%. High-temperature phase stability, suppressing phase transformation volume effect, suitable for long-term use at 2000℃.
- Ultra-High Purity, Extremely Low Impurity Content
High-purity zirconia matrix with extremely low impurity content: Al₂O₃ 0.20%, SiO₂ 0.02%, MgO 0.03%, Fe₂O₃ 0.04%, Na₂O 0.01%. High purity ensures no reaction with materials at high temperatures and no introduction of foreign impurities, making it particularly suitable for high-purity materials, precious metal smelting, and single crystal growth processes requiring high cleanliness.
- Ultra-high temperature resistance, up to 2000℃
With a maximum operating temperature of 2000℃ and a bulk density of 4.1 gramos/cm³, it has a dense structure. Suitable for long-term use in extreme high-temperature conditions such as ultra-high temperature ceramic sintering, precious metal smelting, and single crystal growth.
- Excellent chemical inertness and corrosion resistance
High-purity zirconium oxide possesses excellent chemical stability and exhibits extremely high resistance to corrosion from highly reactive media such as precious metals (platinum, palladium, rhodium, etc.), alkaline melts, and acidic slags. It does not corrode or contaminate materials during long-term use, ensuring product purity.

| Test Item | Test Result |
|---|---|
| ZrO₂+HfO₂ | 95.21% |
| Al₂O₃ | 0.20% |
| SiO₂ | 0.02% |
| CaO | 3.85% |
| MgO | 0.03% |
| Fe₂O₃ | 0.04% |
| Na₂O | 0.01% |
| Maximum service temperature | 2000℃ |
| Density | 4.1 gramos/cm³ |
Áreas de aplicación
- Ultra-high Temperature Ceramic Sintering: Suitable for pollution-free sintering of ultra-high temperature ceramic materials such as carbides, borides, and nitrides.
- Precious Metal Smelting and Purification: Suitable for high-temperature smelting and purification of precious metals such as platinum, palladium, and rhodium.
- Single Crystal Growth: Suitable for high-temperature single crystal growth processes of YAG, sapphire, scintillation crystals, etc..
- Special Glass and Optical Material Melting: Suitable for melting high-refractive-index special glasses, optical glasses, and other materials requiring extremely high-quality crucible materials.
- Aerospace Material Heat Treatment: Suitable for heat treatment processes of ultra-high temperature materials in the aerospace field.
- Universities and Research Institutes: Suitable for ultra-high temperature experimental teaching and research projects in materials science and engineering, metallurgical engineering, and related majors.
Perfil de la empresa
Una empresa profesional especializada en servicios de tecnología de tratamiento térmico y R.&D, fabricación, y venta de hornos eléctricos de alta temperatura.
La empresa se centra en el desarrollo de hornos eléctricos de alta temperatura que cubren un rango completo de temperatura de -100 ℃ a 2600 ℃.. Entre sus productos se encuentran hornos eléctricos experimentales., hornos de atmósfera de vacío, hornos industriales, y equipos de calentamiento por inducción de media frecuencia. Los principales productos incluyen hornos de caja., hornos tubulares, hornos elevadores, hornos de empuje, hornos de bogie, hornos rotativos, hornos de túnel, y varios hornos especializados de media frecuencia.
La empresa se adhiere a la innovación tecnológica y ha aprobado las certificaciones ISO9001 y CE de la UE.. posee 21 marcas registradas, 29 patentes, y 27 derechos de autor del software.






Métodos de pago
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Métodos de envío
El horno eléctrico está empaquetado en tres capas.: primero envuelto en papel de espuma, luego envuelto en película plástica, y finalmente embalado en una caja de madera..
Preguntas frecuentes (Preguntas frecuentes)
- What is the highest temperature that calcium-stabilized zirconia crucibles can withstand?
Calcium-stabilized high-purity zirconia crucibles can withstand temperatures up to 2000℃, suitable for ultra-high temperature melting and special material processing.
- Why do zirconia crucibles require calcium stabilization treatment?
Zirconium oxide undergoes crystal form changes at high temperatures. Stabilization with calcium oxide (CaO) improves the material’s structural stability, reduces cracking during thermal cycling, and extends its service life.
- What materials are suitable for melting with calcium-stabilized zirconia crucibles?
Suitable for melting precious metals such as platinum, palladium, and rhodium, high-temperature alloys, special oxide materials, and high-temperature molten materials requiring high corrosion resistance and purity.
- What are the advantages of zirconia crucibles compared to alumina crucibles?
Zirconium oxide crucibles have higher temperature resistance, lower thermal conductivity, and stronger chemical stability, making them particularly suitable for harsh environments such as high-temperature, highly corrosive, and precious metal melting.
- Do you support custom-made zirconia crucibles of different specifications?
Supported. Manufacturers can customize zirconia crucibles of different sizes, capacities, shapes, and structures according to customer needs to meet the requirements of laboratory research and development, testing and analysis, and industrial production applications.













