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ORCAS Thermal Insulation 1430C Ceramic Fiber Module

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Thermal Insulation: Designed for high-temperature environments, the ORCAS Thermal Insulation 1430C Ceramic Fiber Module provides卓越的热绝缘性能, effectively reducing heat transfer in industrial furnaces and equipment.
  • Material Composition: Made of ceramic fiber with a chemical composition of SiO₂ and Al₂O₃, ensuring chemical stability, lightweight design, and resistance to thermal shock and corrosion.

Key features

  • 1. Material Technology

  • With a ceramic fiber composition rich in SIO₂ and Al₂O₃, achieve superior heat resistance and chemical stability, ensuring reliable performance in extreme industrial furnace environments compared to traditional insulation materials*

  • 2. Interactive Design

  • With a modular and flexible design, easily customize the insulation module to fit diverse furnace configurations, streamlining installation and maintenance processes.

  • 3. Performance Parameters

  • With ultra-fine ceramic fibers (3-5μm diameter), achieve up to 20% higher thermal efficiency compared to standard ceramic fiber modules, reducing heat loss in industrial applications*

  • 4. Scenario Solutions

  • With a design optimized for continuous operation in industrial furnaces, provide stable insulation performance at temperatures up to 1430°C, ideal for demanding manufacturing environments.

  • 5. Certification Standards

  • With compliance to industry safety standards for high-temperature insulation materials, ensure regulatory compliance and reliable performance in industrial applications*

Product details

ORCAS Thermal Insulation 1430C Ceramic Fiber Module

The ORCAS Thermal Insulation 1430C Ceramic Fiber Module is a high-performance insulation solution designed for industrial furnace applications. Crafted from premium ceramic fiber with a chemical composition of SIO₂ and Al₂O₃, this module offers exceptional thermal stability, chemical resistance, and durability. Its ultra-fine fiber diameter (3-5µm) ensures superior insulation efficiency while maintaining flexibility for easy installation.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionSIO₂ & Al₂O₃ (high-purity ceramic fiber)Withstands extreme temperatures in industrial furnaces
Fiber Diameter3-5µmMinimizes heat transfer in high-temperature zones
GradeCommonCost-effective solution for standard furnace insulation
Density180-200 kg/m³Balances thermal resistance and structural integrity

Customization guide

Adjustable parameters include thickness (5-50mm) and module dimensions (custom cut-to-size) to meet specific furnace design requirements. For enhanced chemical resistance, inquire about upgrading to a premium-grade ceramic fiber blend.

Get inspired

With its lightweight yet robust ceramic fiber construction, the 1430C module is ideal for insulating industrial kilns, boilers, and high-temperature processing chambers. Its fine fibers ensure minimal thermal bridging, reducing energy loss and operational costs.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Resistance0.04 W/m·K+15% (0.046 W/m·K)+30% (0.052 W/m·K)
Service Temp.1260°C1400°C1550°C
Density180 kg/m³190 kg/m³200 kg/m³
Chemical ResistanceStandard+20% acid/alkaliTriple industry norm

Supplier's note

  1. Technical Breakthroughs:

    • Ultra-fine fibers (3-5µm): Reduce heat loss by 20% compared to conventional ceramic wool.
    • High SIO₂/Al₂O₃ content: Enhances resistance to corrosive gases in furnace environments.
    • Reinforced strapping: Ensures structural integrity during transportation and installation.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial furnaces operating below 1300°C.
    • Advanced Model: Suitable for applications requiring moderate chemical resistance (e.g., metal annealing).
    • Pro Model: Best for extreme environments (e.g., glass manufacturing) where temperatures exceed 1500°C and prolonged chemical exposure occurs. With its triple-standard chemical resistance, the Pro Model safeguards equipment longevity even in harsh conditions.

Frequently asked questions

  • Which ceramic fiber module suits high-temperature industrial furnaces?

  • How to maintain ORCAS 1430C modules for longevity?

  • Ceramic fiber vs fiberglass: Which is better for furnace insulation?

  • Can ORCAS 1430C modules be customized for furnace doors?

  • Is ORCAS 1430C certified for high-temp industrial use?

  • How to install ceramic fiber modules in furnace walls?

  • Does ORCAS 1430C resist thermal shock in furnaces?

  • What makes ORCAS 1430C better than standard ceramic fiber?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Thermal ConductivityHigh-temperature furnace liningIndustry: 0.045 W/m·KBase: 0.040 W/m·K (▲)Advanced: 0.035 W/m·K (▲▲) (▲▲: 30% lower than Industry Standard)
Chemical ResistanceChemical processing plantsIndustry: Resists 15 chemicalsBase: 18 chemicals (▲)Advanced: 22+ chemicals (▲▲) (▲▲: Passes ASTM D543 for 22+ corrosives)
Fiber DiameterPrecision thermal applicationsIndustry: 5–8 µmBase: 4–6 µm (▲)Advanced: 3–5 µm (▲▲) (▲▲: Finer fibers enhance thermal efficiency)
Service TemperatureUltra-high-temperature steel manufacturingIndustry: Up to 1200°CBase: 1300°C (▲)Advanced: 1400°C (▲▲) (▲▲: Handles extreme furnace operations)
DensityLightweight mobile equipment insulationIndustry: 220 kg/m³Base: 200 kg/m³ (▲)Advanced: 180 kg/m³ (▲▲) (▲▲: Lighter yet robust structure)
Acoustic InsulationNoise-sensitive industrial facilitiesIndustry: 30 dB reductionBase: 32 dB (▲)Advanced: 35 dB (▲▲) (▲▲: Quieter than standard industrial noise levels)

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.