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  • Clay Graphite Crucible WITH Spout
  • Clay Graphite Crucible WITH Spout
  • Clay Graphite Crucible WITH Spout
  • Clay Graphite Crucible WITH Spout
  • Clay Graphite Crucible WITH Spout
  • Clay Graphite Crucible WITH Spout
Clay Graphite Crucible WITH Spout

Clay Graphite Crucible WITH Spout

$8.00-$150.00/ Piece|1 Piece/Pieces(Min. Order)

Clay Graphite Crucible WITH Spout

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Casting: Designed for melting and casting metals in high-temperature environments, leveraging its graphite-clay composite material for exceptional thermal resistance and non-reactivity.
  • Precision Pouring: Equipped with a spout for controlled, spill-free pouring of molten materials, ensuring accuracy during casting processes.

Key features

  • 1. Material Technology

  • With a durable clay-graphite composite material, ensure high-temperature resistance and non-reactive performance, outperforming traditional clay crucibles in harsh industrial environments*.

  • 2. Interactive Design

  • With the precision-engineered pouring spout, enable controlled and spill-free pouring of molten materials, surpassing standard crucibles without integrated spouts*.

  • 3. Performance Parameters

  • With high-strength construction, withstand extreme thermal stress during casting processes, making it suitable for heavy-duty industrial applications compared to conventional crucibles*.

  • 4. Scenario Solutions

  • Designed for continuous industrial casting operations, this crucible supports uninterrupted use in foundries and laboratories, outlasting consumer-grade alternatives in demanding environments*.

  • 5. Certification Standards

  • Constructed with non-reactive materials compliant with metallurgical industry standards, ensuring contamination-free casting processes*.

Product details

Clay Graphite Crucible WITH Spout

The Clay Graphite Crucible WITH Spout combines high-strength graphite with a clay composite to deliver exceptional durability and thermal stability for casting applications. Its cylindrical design with a pouring spout ensures precise molten material handling, while its non-reactive material prevents contamination in high-temperature processes.

Technical specifications

FeatureSpecificationBenefit
MaterialGraphite + Clay CompositeHigh-temperature resistance, non-reactive
TypeHigh StrengthWithstands heavy-duty casting demands
ApplicationCasting (metals, alloys)Optimized for industrial and lab use
Temperature RangeUp to 1600°CSafe for molten metal processing

Customization guide

Adjustable parameters include size (diameter/height) and spout angle to meet specific casting volume or pouring precision needs.

Get inspired

Ideal for foundries and labs, this crucible ensures reliable metal casting with minimal material loss. Its spout design streamlines workflows, while its high-strength structure reduces breakage during repeated use.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Temperature1600°C+15% (1840°C)*+30% (2080°C)*
Thermal Shock ResistanceStandardEnhanced (+20% cooling speed)Premium (3x industry benchmark)
Chemical StabilityBasicCorrosion-ResistantTripled durability vs. benchmarks

Supplier's note

  1. Technical Breakthroughs:

    • High-Strength Graphite: Reduces cracking risks by 40% in heavy-duty casting.
    • Enhanced Spout Design: 20% faster pouring efficiency than traditional models.
    • Clay Composite Coating: Achieves 25% better thermal shock resistance.
  2. Version Selection Guide:

    • Base Model: Suitable for standard foundries requiring up to 1600°C.
    • Advanced Model: Ideal for labs needing faster cooling (e.g., precision alloy casting).
    • Pro Model: Best for extreme environments (e.g., titanium or refractory metal processing). With its tripled chemical stability, the Pro ensures safe handling of corrosive alloys, paired with its high-temperature tolerance for unmatched versatility.

*Comparative values based on industry benchmarks (ASTM C693).

Frequently asked questions

  • Which crucible model is best for high-volume metal casting operations?

  • How do I clean and maintain a clay graphite crucible after use?

  • Why choose a clay graphite crucible over ceramic for high-temperature applications?

  • Can this crucible be customized for specific casting requirements?

  • Is this crucible certified for high-temperature industrial casting processes?

  • What types of metals can be safely melted in this crucible?

  • How does the spout design improve casting precision and safety?

  • How does the clay composite enhance the crucible’s durability under extreme heat?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
High-Temperature CruciblesFoundries, metal castingTemperature Resistance: 2800°C (Base) ▲ 3000°C (Advanced) (ASTM C551)Withstands extreme heat (e.g., molten steel) ▲ +200°C improvement in AdvancedExpensive; requires specialized handling (e.g., thermal shock resistance)
Chemical-Resistant CruciblesChemical processing, labsChemical Permeation: Passes ASTM F739 (30+ chemicals, 30min exposure)Prevents contamination ▲ Enhanced corrosion resistance in AdvancedBrittle; limited thermal shock tolerance (e.g., sudden temperature changes)
Lightweight CruciblesPortable applications, small-scale labsWeight: 2.5 kg (Base) ▲ 1.8 kg (Advanced) (ISO 3801-compliant material)Easy handling ▲ 30% lighter in AdvancedLower durability; unsuitable for heavy loads (e.g., >5kg molten material)
High-Strength CruciblesHeavy-duty casting, industrial foundriesTensile Strength: 450 MPa (Base) ▲ 550 MPa (Advanced) (ASTM E8/E9)Resists deformation under stress ▲ +22% stronger in AdvancedHeavier; higher cost compared to standard crucibles (e.g., 30% price premium)
Cost-Effective CruciblesSmall-scale operations, educational usePrice: $120 (Industry Standard) ▲ $150 (Our Base)Affordable for budget-sensitive projectsLimited durability (e.g., 50 uses vs. 200 for Advanced)
Customizable CruciblesSpecialty applications (e.g., aerospace)Customization: Capacity up to 50L (ISO 9001-certified)Tailored to unique specs (e.g., tapered spout for precision pouring)Longer lead times (4–6 weeks) ▲ 3 weeks (Advanced with rapid prototyping)

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