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  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
  • 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price
1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price

1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price

$4.90-$12.90/ Roll|1 Roll/Rolls(Min. Order)

Customization:

size(Min.Order: 10000 pieces)

1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Thermal Insulation: Designed to withstand extreme temperatures up to 1430°C (2606°F), providing robust insulation for industrial furnaces, kilns, and refractory systems.
  • Fireproof Protection: Made of high-zirconium alumina-silica ceramic fiber, ensuring flame resistance and durability in high-temperature environments.

Key features

  • 1. Advanced Material Technology

  • With high-zirconium ceramic fiber composition (Al₂O₃/SiO₂ blend), achieve superior heat resistance up to 1430°C (2606°F), outperforming standard alumina-silica blends.* This fireproof material maintains structural integrity in corrosive environments, ensuring long-term durability.

  • 2. Flexible Interactive Design

  • With a rollable, easy-to-cut design, customize dimensions on-site for precise insulation fitting in complex industrial setups. The lightweight, fluffy texture allows seamless integration into tight spaces like furnace linings or boiler systems.

  • 3. Extreme Performance Parameters

  • With a maximum operating temperature of 1430°C (2606°F), maintain structural integrity under extreme conditions longer than conventional ceramic fiber blankets.* Its low thermal conductivity reduces heat loss by up to 30%* compared to traditional insulation materials.

  • 4. Industrial Scenario Solutions

  • Designed for continuous operation in industrial furnaces and refractory systems, this blanket optimizes energy efficiency by minimizing heat leakage. Ideal for high-temperature environments like metal processing or kilns where uninterrupted performance is critical.

  • 5. Certified Safety Standards

  • Backed by CE certification, ensure compliance with EU safety and quality standards for high-temperature industrial applications. Meets rigorous testing for fire resistance and chemical stability.

Product details

1430C 2606F High Zirconium HZ Type High Temperature Insulation Material Alumina Silica Ceramic Fiber Blanket Price

The 1430C 2606F High Zirconium HZ Type High Temperature Insulation Material is a premium ceramic fiber blanket engineered for extreme thermal resistance and durability. Designed for industrial furnaces and refractory applications, it combines high zirconium content with advanced ceramic fiber technology to withstand temperatures up to 1430°C. Certified to CE standards, this material offers fireproof protection and energy efficiency in harsh environments.

Technical specifications

FeatureSpecificationBenefit
MaterialCeramic fiber (Al₂O₃/SiO₂ composition)Lightweight, flexible thermal barrier
Temperature RatingContinuous use up to 1430°CWithstands extreme heat in furnaces
Zirconium ContentHigh zirconium (HZ) gradeEnhanced durability and oxidation resistance
Density260 kg/m³ (2606F specification)Balances insulation efficiency and flexibility
CertificationCE-compliantEnsures safety and regulatory compliance
ApplicationIndustrial furnaces, kilns, refractoryOptimized for high-temperature environments

Customization guide

Adjustable parameters include thickness (1-5mm), density (200-300 kg/m³), and custom dimensions to meet specific thermal or structural requirements. For example, thicker blankets (e.g., 5mm) enhance insulation in high-heat zones, while lower density versions reduce weight for portable applications.

Get inspired

With its high zirconium content and ceramic fiber composition, this material is ideal for insulating industrial kilns, furnace linings, and high-temperature equipment. Its lightweight design simplifies installation, while its fireproof properties ensure safety in flammable environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Operating Temp1430°C1450°C (+1.4%)1500°C (+4.9%)
Zirconium Content18%22% (+22%)28% (+56%)
Density (kg/m³)260280 (+7.7%)300 (+15%)
Chemical ResistanceStandardAcid/alkali ratedUltra-corrosion resistant

Supplier's note

  1. Technical Breakthroughs:

    • High Zirconium Content: The Pro model’s 28% zirconium content triples oxidation resistance compared to standard ceramic blankets, extending lifespan in corrosive environments.
    • Temperature Thresholds: The Advanced model’s 1450°C rating outperforms industry benchmarks by 20°C, enabling use in ultra-high-heat processes like glass melting.
    • Lightweight Design: At 260 kg/m³, the Base Model is 20% lighter than traditional silica blankets, reducing installation labor costs.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial furnaces (e.g., steel processing) where cost efficiency is prioritized.
    • Advanced Model: Recommended for chemical plants or foundries requiring acid/alkali resistance alongside high-temperature performance.
    • Pro Model: Best suited for aerospace or metallurgy applications where extreme heat (1500°C+) and prolonged exposure demand superior durability.

With the Pro version’s 1500°C rating and ultra-corrosion resistance, users can safely insulate molten metal equipment, reducing downtime by 30% compared to conventional materials. Pair its high zirconium content with low thermal conductivity to minimize energy loss in energy-intensive industries.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
High Zirconium Ceramic Fiber Blanket (HZ)High-temperature furnaces, jet enginesThermal Resistance: 1600°C (EN 13819) ▲▲
Al2O3: 45% (ASTM C713)
Noise: 0.5 dB (ISO 10140)
Extreme heat tolerance (▲▲ vs Industry Standard)
Low noise (quieter than a refrigerator)
CE-certified durability
Higher cost
Requires specialized handling (e.g., respirators)
Standard Ceramic Fiber BlanketGeneral industrial ovens, kilnsThermal Resistance: 1400°C (EN 13819)
Al2O3: 30% (ASTM C713)
Noise: 1.2 dB (ISO 10140)
Cost-effective baseline solution
Widely compatible with standard equipment
Limited to moderate temperatures
Higher noise (louder than a washing machine)
High Alumina Ceramic Fiber BlanketAutoclaves, moderate-temperature systemsThermal Resistance: 1430°C (EN 13819) ▲
Al2O3: 40% (ASTM C713) ▲
Noise: 0.8 dB (ISO 10140) ▲
Improved temp tolerance (▲ vs Industry Standard)
Balanced cost-performance
Not suitable for extreme environments (e.g., jet engines)
Fiberglass InsulationHVAC systems, building insulationThermal Resistance: 500°C (ISO 1180-1)
Noise Damping: 90 dB (ISO 10140)
Lightweight and easy to install
Cost-effective for low-temperature needs
Poor heat retention for high-temperature applications
High noise (louder than traffic)
Mineral Wool InsulationBuilding walls, ceilingsThermal Resistance: 750°C (ISO 1180-1)
Noise Damping: 1.5 dB (ISO 10140)
Excellent sound absorption (quieter than fiberglass)
Moisture-resistant
Limited to moderate temperatures
Heavier and bulkier than ceramic fiber
Silica Wool InsulationAutomotive exhaust systemsThermal Resistance: 1200°C (EN 13819)
Noise Damping: 2.0 dB (ISO 10140)
High-temperature resilience for automotive parts
Chemical resistance (ASTM F739)
Higher cost than fiberglass
Less durable than ceramic fiber in extreme conditions

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