ADCERAX is a China ceramic crucible manufacturer providing lab-grade ceramic crucibles for research laboratories and industrial heating lines. Standard sizes ship from stock, while our engineers customize shapes, materials and capacities to your drawings so you can match temperature range and chemistry, stabilize batch quality and secure reliable supply.

Working factory-direct helps you cut scrap, avoid furnace downtime and keep lead times predictable.

What is Ceramic Crucible?

Ceramic Crucible Meaning

A ceramic crucible is a refractory container made from engineering ceramics such as alumina, zirconia, boron nitride or silicon carbide, designed to hold solids or melts during high-temperature treatment. Compared with metal vessels, a ceramic crucible offers excellent resistance to heat, corrosion and thermal shock, while keeping metal ions and other impurities away from your sample.

Standard Size Arc-shaped Alumina Crucibles for Labs

Formation of Ceramic Crucible

Raw Material Preparation
🧬 Step 1. Powder Preparation

💠High-purity ceramic powders such as alumina, zirconia, BN, SiC or Si₃N₄ are selected according to the target temperature range and chemistry.
💠Finely milled powders are blended with small amounts of binders, plasticizers and, where needed, sintering aids to achieve good packing and forming behaviour.

Forming
🧫 Step 2. Forming the green body

💠Pressing and molding – dry or isostatic pressing, and in some cases extrusion or injection molding, are used for standard cups, bowls and tubular shapes with uniform wall thickness.
💠Slip casting – a fluid ceramic slurry is poured into porous molds for more complex contours or thin-walled designs that need precise detail.

Sintering
🔥 Step 3. Drying and green machining

💠Moisture and organics are removed in a controlled drying step to prevent warping, surface blistering or early cracking when the crucible enters the kiln. This stage also stabilizes dimensions so subsequent handling and inspection are more reliable.
💠Once dry, critical surfaces, rims and interfaces can be green machined (drilled, turned or ground) to tighten tolerances, refine fit with lids or holders and correct minor shape deviations before the final firing stage.

Post-processing and Finishing
⚙️ Step 4. Firing / sintering

💠The green crucible is heated along a defined temperature profile to burn out binders and sinter the ceramic matrix, so particles fuse together, porosity decreases and the body reaches its final density, mechanical strength and thermal shock resistance.
💠Depending on the composition, firing is carried out in air, inert or other controlled atmospheres to protect the material and achieve the required properties.

Properties of Ceramic Crucibles

Ceramic crucibles made from advanced ceramics such as alumina, zirconia, boron nitride and silicon carbide offer a combination of high hardness and wear resistance, excellent chemical stability and strong resistance to oxidation at elevated temperatures.

Alumina Ceramic Crucible

Alumina ceramic crucibles (Al₂O₃) combine high hardness, excellent chemical stability, good thermal shock resistance and reliable electrical insulation at elevated temperatures.

PropertyUnit99% Al₂O₃99.5% Al₂O₃99.6% Al₂O₃99.7% Al₂O₃99.8% Al₂O₃99.9% Al₂O₃99.99% Al₂O₃
Alumina content%9999.599.699.799.899.999.99
Densityg/cm³3.883.893.913.923.933.943.98
Flexural strengthMPa360379312313314315320
HardnessGPa13.514.1 2324252630
Thermal conductivityW/m·K30–353532–3733–3834–3935–4036–42
Thermal shock resistance ΔT°C200222223224225228
Maximum use temperature (no load)°C≤1700≤175017551760176517701800
Coefficient of thermal expansion10⁻⁶/°C8.28.4
Melting point°C≈2050≈2050≈2050≈2050≈2050≈2050≈2050

Zirconia Ceramic Crucible

Zirconia ceramic crucibles (ZrO₂) provide higher maximum temperature capability, superior thermal shock resistance and greater fracture toughness than standard alumina, together with low thermal conductivity and strong corrosion resistance at elevated temperatures.

PropertySpecification
Maximum Working Temperature1500 °C continuous use
Density5.65 g/cm³
Thermal Expansion Coefficient10.3 × 10⁻⁶/K (25–1000 °C)
Thermal Conductivity2.2 W/m·K at 1000 °C
Chemical Stability0.08% mass loss after 24 h acid/alkali exposure at 1200 °C
Flexural Strength900 MPa at room temperature
Fracture Toughness8 MPa·m½
Hardness (Vickers)12 GPa
Elastic Modulus210 GPa

Boron Nitride Ceramic Crucible

Boron nitride ceramic crucibles (BN) offer excellent thermal shock resistance, high-temperature stability, very low wettability to metals and molten silicon, along with good chemical inertness and electrical insulation.

PropertyUnitPyrolytic Boron NitrideHot Pressed Boron Nitride
Purity%99.99%99.50%
Densityg/cm³2.15–2.191.96–2
HardnessHVO.565162
Volume resistivityOhm·cm2×10¹⁴1.2×10¹⁴
Dielectric strengthkV/mm5576
Maximum working temperature°C1000 (air), 2300 (vacuum)900 (air), 1850 (vacuum)
Bending strengthMPa173 (A direction)310
Thermal conductivityW/m·K60 (A direction)55
Tensile strengthMPa112 (A direction)110
Thermal expansion coefficient1/°C6×10⁻⁷1.8×10⁻⁶
Compressive strengthMPa154 (A direction)120

Silicon Carbide Ceramic Crucible

Silicon carbide ceramic crucibles (SiC) feature high thermal conductivity, excellent mechanical strength and strong thermal shock resistance, together with good oxidation and wear resistance at elevated temperatures.

PropertySpecification
Material SystemRBSiC (80% SiC, 20% free Si) / SSiC (≥99% SiC)
Maximum Operating Temperature≤1380°C (RBSiC) / ≤1600°C (SSiC)
Bulk Density3.02 g/cm³ (RBSiC) / 3.10 g/cm³ (SSiC)
Open Porosity<0.1%
Flexural Strength (20°C)250 MPa (RBSiC) / 380 MPa (SSiC)
Flexural Strength (1200°C)280 MPa (RBSiC) / 400 MPa (SSiC)
Compressive Strength1000–2200 MPa
Elastic Modulus330 GPa (RBSiC) / 420 GPa (SSiC)
Thermal Conductivity45 W/m·K (RBSiC) / 74 W/m·K (SSiC)
Thermal Expansion Coefficient4.1–4.5 ×10⁻⁶/K
Hardness2600–2800 kg/mm²
Chemical Stability RangepH 2–12
Oxidation Stability<1% microstructural oxidation after 50 cycles (1000°C → RT)

Types of Ceramic Crucibles

❓ Not Sure Which Ceramic Crucible Fits Your Process?

Share your drawing and operating conditions—temperature range, furnace type, atmosphere, chemistry and batch volume—and we’ll recommend the most suitable ceramic crucible material and design, together with a manufacturable solution you can qualify and repeat.

Applications of Ceramic Crucible

Crucible ceramics are used anywhere materials must be heated, melted or calcined in a clean, repeatable way. Different materials and shapes support very different duties, from small analytical samples to heavier furnace loads and molten metal batches.

laboratory alumina ceramic crucible

Laboratory & Analytical Work

Lab ceramic crucible designs focus on accuracy, low contamination and easy handling in routine tests and research labs. Typical uses include:

industrial ceramic crucible1

Furnaces, Muffle Furnaces and Kilns

For continuous or batch thermal processes, robust containers are needed to survive repeated firing cycles. Typical applications include:

ceramic crucible for melting silver

Metal and Glass Handling

When working with molten phases, crucible material and design strongly influence lifetime and contamination levels. Typical uses include:

Silicon and Solar-Related Processes

Special ceramic systems are required where silicon and related materials are processed at high temperature. Examples include:

China Ceramic Crucible Customized

ADCERAX is a China ceramic crucibles supplier specializing in custom-made crucibles for laboratory and industrial furnaces. We tailor capacity, shape, wall thickness and material grade to your drawings, while keeping key standard sizes in stock for urgent needs. 

Customization Options

Special Dimension

Extra-large / Extra-small diameters, non-standard thicknesses, and ultra-long / ultra-short lengths.

Precision Tolerance

Provide higher - level dimensional accuracy and concentricity control than the standard.

Complex Shapes

Flanges, steps, threads, drilling holes, grooves, etc.

Special Purity

Adjust the material according to the application requirements.

Surface Finish

Polish and grind the surface to achieve a specific surface roughness.

Customization Process

Requirement Submission

Send us your drawing, CAD file, or physical sample with material grade, dimensions, tolerances, and quantity. Our engineers will evaluate the design and provide a detailed quotation with lead time and pricing.

Confirm Order & Prototype

Once the quote is approved, we proceed with sample prototyping (1–50 pcs) if needed, for testing and validation.

Mass Production & Quality Control

After sample approval or direct confirmation, we begin batch manufacturing using CNC machining, sintering, and polishing. All parts undergo dimensional checks, material purity testing, and surface finish inspection.

Packaging & Global Delivery

Finished products are securely packed and shipped via DHL/FedEx/UPS or your preferred method. We support global delivery with full documentation.

Why Choose ADCERAX as Your Ceramic Crucible Manufacturer?

ADCERAX is a ceramic crucible wholesaler in China, producing custom and standard crucibles with controlled materials and tight tolerances. Experienced engineers, responsive sampling and reliable export logistics make ceramic crucible sourcing efficient, predictable and easy to support long-term.

Factory Direct & Competitive Pricing

Competitive pricing with strict quality control from raw material sourcing to final delivery

Expert Engineering Support

Professional team providing comprehensive technical support and collaborative design

Flexible Small Batch Customization

Small batch orders to large-scale production with complex geometries and tight tolerances

Rapid Response & Efficient Delivery

24-hour response and 24-hour dispatch for standard items, 3-7 weeks for custom orders.

Professional Ceramic Crucible Factory-ADCERAX

CNC PROCESS

ADCERAX has been engaged in advanced ceramics for over 20 years and has developed more than 2,000 types of high-temperature components, with a strong focus on ceramic crucibles made from alumina, zirconia, boron nitride, silicon carbide, aluminum nitride and related materials.

We supply both custom and standard ceramic crucibles for laboratory use, muffle and box furnaces, metal and glass melting and other thermal processes, exporting to more than 50 countries and supporting industrial users and OEMs that require stable, low-contamination and long-life crucible performance.

Ceramic Crucible Processing Strength

ADCERAX completes every step, from forming to diamond machining, to keep crucible walls and rims consistent. Tuned sintering profiles and 100% visual checks for cracks or chipping give you strong, thermal-shock-resistant crucibles that run reliably over many furnace cycles.

CNC Forming Stability & Wall Thickness Control

Dimensional accuracy for ceramic crucible bowl is achieved through CNC-assisted forming and machining, keeping wall thickness, roundness and base flatness within tight, repeatable tolerances for reliable furnace loading.

Wall Thickness Consistency

Holding crucible wall variation within ±0.2 mm for stable heating and cooling.

Roundness & Flatness Control

Controlling mouth roundness and base flatness to ensure smooth stacking and contact with supports.

Lid and Crucible Fit Matching

Machining rims so lids and bodies mate correctly, improving sealing and handling strength.

CNC Grinding Stability & Micron Tolerance

Clean, Low-Contamination Surface Finishing

Internal and external crucible surfaces are refined to reduce residue build-up, minimise contamination and limit micro-cracks, helping each firing cycle stay stable and easy to clean.

Refined Inner Surface

Optimised Ra reduces sample adhesion while preserving suitable wetting in melts and slurries.

Edge & Rim Deburring

Removing sharp rims and micro-chips to lower breakage risk during loading and tongs handling.

Optional Glazing or Polishing

Applying selected finishes where lower porosity or easier cleaning is required.

Sub-Micron Polishing for Functional Surfaces

High-Temp Sintering for Service Life & Thermal Shock Resistance

Microstructure density and strength in ceramic crucibles are developed through controlled high-temperature sintering cycles, tuned to each material system for long life under repeated firing.

Programmable Kiln Profiles

Matching soak times and peak temperatures to alumina, zirconia, BN or SiC crucible materials.

Thermal Shock Optimisation

Managing ramp and cool-down rates to balance strength, density and resistance to cracking.

High-Density Fired Bodies

Low open porosity improves chemical stability and cuts contamination over many cycles.

High-Temp Sintering for Microstructure Integrity

FAQs About Ceramic Crucibles

A ceramic crucible is a high-temperature container used for ashing, calcination, melting, filtration and sample preparation in muffle furnaces, box furnaces and kilns, where a stable, low-contamination vessel is required.

Select the material based on temperature, atmosphere and chemistry:

  • Alumina ceramic crucible (Al₂O₃)
    Suitable for most oxidising lab and furnace work; good balance of cost, high temperature capability and chemical stability.

  • Zirconia ceramic crucible (ZrO₂)
    Used when you need higher working temperature, better thermal shock resistance and higher toughness than alumina.

  • Boron nitride ceramic crucible (BN)
    Chosen for very low wettability to metals and molten silicon, excellent thermal shock resistance and good chemical inertness.

  • Silicon carbide ceramic crucible (SiC)
    Preferred where high thermal conductivity, strong mechanical strength and good thermal shock resistance are important.

For analytical work, small ceramic crucible volumes (for example 10–50 ml) minimise sample and energy use, while larger ceramic crucible capacities (such as 300–500 ml and above) suit furnace loads, pilot batches or metal and glass melting; always check internal dimensions and fill level against your sample mass.

A ceramic crucible with lid is preferred when you need to limit contamination, reduce evaporation or splashing, protect sensitive samples in a muffle furnace, or partially control atmosphere around the charge during heating.

Yes. For many non-ferrous metals, high-purity alumina ceramic crucible and silicon carbide ceramic crucible are commonly used; for more reactive alloys or where wetting must be very low, boron nitride ceramic crucible or zirconia ceramic crucible may be selected. In all cases, metal chemistry, fluxes, atmosphere and temperature must be checked to choose a compatible ceramic system.

Ceramic crucibles perform better in oxidizing atmospheres and many corrosive environments, while graphite crucibles offer excellent thermal shock and conductivity but are limited in air at high temperatures; choice depends on atmosphere and metal chemistry.

Service life depends on material, temperature, atmosphere, handling and thermal cycling; under well-controlled conditions, a high-purity ceramic crucible can often survive many cycles, while harsh chemistries or fast ramps shorten lifetime.

Yes, lab ceramic crucible designs in high-purity alumina are widely used for loss-on-ignition (LOI) and VSS analysis, because they offer stable mass, good thermal shock resistance and low interaction with residues during repeated firing cycles.

For an accurate ceramic crucible price, provide material (for example alumina, zirconia, BN, SiC), internal dimensions, wall thickness, whether you need a ceramic crucible with lid, required quantity, temperature range, furnace type and preferred delivery terms.

Allow the crucible to cool gradually, remove loose residues mechanically, then use a controlled burn-off or compatible chemical cleaning method; avoid quenching, hard impact and aggressive grinding that may introduce microcracks.

Ceramic crucibles generally have a higher unit cost than simple metal options but offer longer life and better chemical stability in many atmospheres; compared with graphite, they can be more cost-effective for oxidising or corrosive environments where graphite degrades quickly.

You can source China alumina ceramic crucibles directly from ADCERAX, a professional ceramic crucible factory that manufactures high-purity alumina crucibles in both standard sizes and custom designs. Send your drawing or size requirements to ADCERAX to get engineering advice, material data and a factory-direct quotation.

Yes. ADCERAX can supply ceramic crucible for melting silver in high-purity alumina and selected silicon carbide grades, suitable for non-ferrous metal melting under the correct temperature, atmosphere and flux conditions. If you share your furnace type, charge size and target temperature, we can recommend a matching material, wall thickness and crucible shape, then quote you a ceramic crucible for sale with factory-direct pricing.

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