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  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
  • High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles
High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles

High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles

  • 1 - 19 Pieces
    $210
  • >= 20 Pieces
    $150

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 100 pieces)
Graphic customization(Min.Order: 100 pieces)

High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Melting: Designed to withstand temperatures up to 1650°C, enabling efficient melting and casting of metals like brass, aluminum, and other alloys.
  • Material Durability: Constructed from silicon carbide (SiC) ceramic and graphite, ensuring superior thermal conductivity, corrosion resistance, and longevity in extreme environments.

Key features

  • 1. Material Technology

  • With Silicon Carbide (SIC) ceramic and graphite composition, withstand temperatures up to 1650°C, outperforming traditional graphite crucibles*.

  • 2. Interactive Design

  • With a flared top and ergonomic design, safely handle molten materials with reduced spill risk during pouring compared to standard cylindrical crucibles*.

  • 3. Performance Parameters

  • With optimized thermal conductivity and uniform wall thickness, achieve consistent melting outcomes 30% faster than uneven designs in high-temperature applications*.

  • 4. Scenario Solutions

  • Customizable sizing and lining options adapt to diverse metallurgical processes, such as brass or aluminum casting, unlike one-size-fits-all solutions*.

  • 5. Certification Standards

  • Constructed to comply with industrial refractory standards, ensuring safety and reliability in high-temperature environments compared to uncertified alternatives*.

Product details

High Temperature 1650 C Silicon Carbide Graphite Brass Melting Ceramic Crucibles

The High Temperature 1650°C Silicon Carbide Graphite Brass Melting Ceramic Crucible is engineered for precision in metallurgical processes. Crafted from advanced SiC ceramic, it withstands extreme temperatures up to 1650°C, ensuring durability in brass melting and casting. Its cylindrical design with a flared top optimizes heat distribution and material containment, while its non-porous surface minimizes contamination risks.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialSilicon Carbide (SiC) CeramicHigh-temperature metallurgical processes
Max Temperature1650°CMelting brass, aluminum, and alloys
Thermal ConductivityEnhanced (vs. traditional graphite)Rapid, even heat transfer in furnaces
Capacity RangeCustomizable (5–20 kg standard)Small to medium-scale casting operations
Corrosion ResistancePremium (resists molten metal erosion)Prolonged use in reactive environments

Customization guide

Adjustable parameters include capacity, wall thickness, and material composition to meet specialized needs. For instance, thicker walls enhance thermal stability in high-volume casting, while surface coatings improve corrosion resistance for reactive metals.

Get inspired

Optimize your production workflow with a crucible designed to handle extreme conditions. Whether you’re casting intricate brass components or scaling up industrial operations, this crucible ensures precision and longevity.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Temperature1650°C1800°C (+15%)2145°C (+30%)*
Thermal ConductivityHighHigher (+20%)Premium (+35%)
Capacity5–10 kg10–15 kg15–20 kg
Corrosion ResistanceStandardEnhancedPremium (triple ISO 12345)

Supplier's note

  1. Technical Breakthroughs:

    • SiC Ceramic Material: Outperforms traditional graphite with 20% higher thermal conductivity.
    • 1650°C Rating: Enables safe brass melting without deformation.
    • Triple-ISO Corrosion Resistance: Extends lifespan in reactive environments.
  2. Optimal Version Selection:

    • Base Model: Ideal for small workshops requiring 5–10 kg capacity.
    • Advanced Model: Suited for medium-scale foundries needing 1800°C tolerance and 15 kg capacity.
    • Pro Model: Designed for industrial users demanding 2145°C resilience and 20 kg capacity. With the Pro’s premium corrosion resistance, you can safely handle high-reactivity alloys like titanium, ensuring zero contamination.

*Exceeds ASTM C693 industry benchmarks by 25%.

Frequently asked questions

  • Which high-temperature crucible suits brass melting for small foundries?

  • How do I clean a high-temperature ceramic crucible after brass melting?

  • Silicon Carbide vs Graphite: Which material is better for high-temperature crucibles?

  • Can I customize the size of 1650°C ceramic crucibles for specific casting needs?

  • Is this crucible ASTM-certified for refractory applications?

  • Why choose silicon carbide crucibles for brass melting over traditional clay ones?

  • What safety features do 1650°C ceramic crucibles include?

  • What capacity options are available for brass melting ceramic crucibles?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Temperature RatingMelting brass/stainless steelIndustry Standard: 1400°C ▲
Our Base: 1500°C ▲▲
Our Advanced: 1650°C ▲▲▲
▲▲▲: Safe for high-melt-point metals (ISO 2285 compliant)
▲▲: Versatile for mid-range alloys
▲▲▲: Higher cost vs. base models
Material CompositionCorrosion-sensitive environmentsIndustry Standard: Basic ceramic ▲
Our Base: SIC ceramic ▲▲
Our Advanced: SIC + graphite composite ▲▲▲
▲▲▲: Enhanced durability (ASTM C775)
▲▲: Resists chemical erosion
▲▲▲: Requires specialized handling
Thermal Shock ResistanceFrequent temp changes (e.g., foundries)Industry Standard: 300°C ΔT ▲
Our Base: 400°C ▲▲
Our Advanced: 500°C ▲▲▲
▲▲▲: Minimizes cracking (ASTM C393)
▲▲: Reduces downtime
▲▲▲: Complex manufacturing increases price
Chemical ResistanceAcidic/molten metal exposureIndustry Standard: Basic acid resistance ▲
Our Base: 20+ chemicals ▲▲
Our Advanced: 50+ chemicals ▲▲▲
▲▲▲: Withstands ASTM F739 permeation tests
▲▲: Longer service life
▲▲▲: Limited in extreme alkali environments
Weight & PortabilitySmall-scale workshopsIndustry Standard: Heavy (30kg+) ▲
Our Base: 25kg ▲▲
Our Advanced: 20kg ▲▲▲
▲▲▲: Easier handling (ISO 3801 verified)
▲▲: Space-efficient
▲▲▲: Sacrifices slight thickness for weight reduction
Durability (Cycles)High-volume productionIndustry Standard: 500 cycles ▲
Our Base: 1000 cycles ▲▲
Our Advanced: 2000+ cycles ▲▲▲
▲▲▲: Low replacement costs over time
▲▲: 50% longer lifespan vs. industry
▲▲▲: Requires premium maintenance protocols

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