



Zirconia Ceramic Crucible for High-Temperature Processing | Industrial & Laboratory Grade
Product Overview
This high-performance zirconia ceramic crucible is made from yttrium-stabilized zirconia (Y-TZP), produced via isostatic pressing and high-temperature sintering. It combines high toughness, heat resistance, and chemical stability, designed for high-frequency, high-impact high-temperature processing scenarios in industrial and laboratory settings. It can directly contact molten metals, glass, and corrosive chemical reagents, making it the preferred vessel for laboratory analysis, new material synthesis, and electronic component sintering.
Technical Support & Services
- Provide material selection technical consultation and solutions
- Custom processing according to customer requirements with precision up to ±0.01mm
- Provide product inspection reports and material certification
Product Detailed Specifications
Core Technical Advantages
✅ Ultra-High Toughness & Thermal Shock Resistance
Fracture toughness is 3–5 times that of alumina, with excellent thermal shock resistance. It can withstand rapid temperature changes (e.g., from 1500°C directly into cold water) without cracking, solving the fragility issue of traditional ceramic crucibles.
✅ High Temperature & Chemical Stability
Stably operates at up to 1500°C for long periods, resistant to acids and alkalis, and does not react with molten metals, glass, or ceramic powders, ensuring sample purity.
✅ Precision Forming & Smooth Surface
The ultra-smooth inner wall has no pores or impurity precipitation, avoiding sample contamination; high dimensional accuracy fits various high-temperature furnace chambers.
✅ Wear Resistance & High Mechanical Strength
Hardness reaches HRA90+, with excellent wear and impact resistance. Service life is 2–3 times that of alumina crucibles, ideal for high-frequency production scenarios.
Key Applications
New Material R&D: High-temperature sintering of lithium battery cathode materials and ceramic powders
Electronic Component Manufacturing: Sintering and heat treatment of thick-film circuits and ceramic substrates
Laboratory Analysis: XRF sample fusion and ash content testing
Metal Smelting: Melting and purification of precious metals and special alloys
Technical Support & Services
✅ Custom Specifications: Customizable size, wall thickness, and special shapes (e.g., with lid, spout)
✅ Material Selection: Y-TZP, Ce-TZP, and other formulations available for different working conditions
✅ Quality Assurance: Factory-tested for airtightness and heat resistance, with material composition reports
Advanced Ceramics
The advanced ceramic family encompasses a variety of materials with distinct properties, each of which has been specially designed for specific application scenarios.
Ceramic Materials
Alumina Ceramics (Al₂O₃)
Alumina is the most widely used advanced ceramic material, offering excellent electrical insulation, high hardness, and good wear resistance. It can operate at temperatures up to 1700°C, making it suitable for a wide range of industrial applications.
Main Application Fields
Widely used in multiple high-end manufacturing fields to provide customized solutions for customers
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Why Dongguan XYC New Material Co., Ltd. Is Your Premier Partner for Advanced Ceramics & Tungsten Carbides
Founded in 2009, we are a leading manufacturer of advanced ceramics and tungsten carbide. We deliver precision components to 1,000+ global customers in semiconductor, automotive, medical, and energy sectors.
Core Advantages
Diverse Materials & Products
Alumina, Zirconia, Silicon Nitride, Silicon Carbide, Aluminum Nitride, and high-performance tungsten carbide; 10,000+ custom component forms, 8 million+ precision components annual output.
Ultra-High Precision & Durability
±0.001 mm machining accuracy; Ceramics resist 1800°C heat and corrosion; Tungsten steel delivers superior wear resistance.
Tailored Cross-Industry Solutions
End-to-end support from material selection to mass production, available for both small-batch prototyping and large-scale orders.





