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  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
  • High Strength Dense Clay Brick for Blast Furnace Chimney Construction
High Strength Dense Clay Brick for Blast Furnace Chimney Construction

High Strength Dense Clay Brick for Blast Furnace Chimney Construction

  • 100 - 499 Pieces
    $0.49
  • 500 - 1999 Pieces
    $0.39
  • >= 2000 Pieces
    $0.29

High Strength Dense Clay Brick for Blast Furnace Chimney Construction

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Structural Support: Designed to withstand extreme temperatures (1580°C–1770°C) in blast furnace chimneys and industrial kilns, providing robust thermal insulation and structural integrity.
  • Customizable Refractory Solutions: Offers bending, welding, cutting, and punching services to adapt to specific construction requirements, ensuring seamless integration into complex systems.

Key features

  • 1. Material Technology: High-Alumina Composition for Thermal Stability

  • With a dense clay brick made from alumina, silica, and fireclay, ensure exceptional resistance to thermal shock and corrosion in high-temperature industrial environments. Outperforms standard clay bricks by maintaining structural integrity at temperatures up to 1770°C [*Disclaimer: Based on internal testing; results may vary].

  • 2. Interactive Design: Customizable Processing for Versatile Applications

  • With customizable processing services (bending, welding, cutting), adapt to complex industrial structures like blast furnace chimneys. Offers 3x more installation flexibility than non-modifiable refractory blocks [*Disclaimer: Results depend on specific project requirements].

  • 3. Performance Parameters: High Refractoriness for Prolonged Use

  • With a refractoriness range of 1580–1770°C, sustain extreme temperatures in blast furnace chimneys without degradation. Maintains stability 20% longer than conventional refractory bricks in continuous heat exposure [*Disclaimer: Testing conditions may vary].

  • 4. Scenario Solutions: Flanged Design for Secure Installation

  • With a flanged brick design, ensure precise alignment and secure installation in high-temperature applications. Reduces structural gaps by 40% compared to standard brick layouts [*Disclaimer: Performance depends on proper installation].

  • 5. Certification Standards: Compliance with Global Safety Regulations

  • With CE and MSDS certifications, meet EU safety and material safety standards for industrial construction. Ensures regulatory compliance in over 30 countries, surpassing non-certified alternatives [*Disclaimer: Certifications apply to listed specifications only].

Product details

High Strength Dense Clay Brick for Blast Furnace Chimney Construction

The High Strength Dense Clay Brick for Blast Furnace Chimney Construction is engineered for industrial and construction applications requiring thermal stability and structural durability. Crafted from alumina, silica, and fireclay, this brick withstands extreme temperatures while maintaining integrity in harsh environments like blast furnaces and kilns. Certified to CE and MSDS standards, it offers customizable processing services for tailored solutions.

Technical specifications

FeatureSpecificationBenefit
Material CompositionAl₂O₃ <45%, SiO₂, Clay, FireclayEnhanced thermal shock resistance
RefractorinessCommon (1580°C ≤ Refractoriness <1770°C)Withstands high-temperature environments
Shape & DesignBrick/Block with flanged edgesEasy installation and heat containment
CertificationsCE, MSDSCompliance with global safety standards
Processing ServicesBending, Welding, Cutting, PunchingCustomizable to fit specific applications

Customization guide

Adjustable parameters include size, shape, and Al₂O₃ content (45%, 50%, or 65%) to meet specialized needs such as varying temperature resistance or structural requirements.

Get inspired

With its dense structure and high thermal stability, this brick is ideal for constructing blast furnace chimneys, industrial kilns, and high-temperature containment systems. Its customizable design ensures seamless integration into diverse infrastructure projects.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Refractoriness1580–1650°C1650–1720°C1720–1770°C*
Al₂O₃ Content45%50%65%
Thermal Shock Resistance8 cycles12 cycles (+50%)15 cycles (+87.5%)
Processing FlexibilityStandard cutsPrecision bendingFull customization

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s 65% Al₂O₃ content delivers 30% higher thermal stability than industry benchmarks, ideal for ultra-high-temperature environments.
    • The Advanced Model’s 12 thermal shock cycles exceed standard refractory brick durability by 50%, ensuring longevity in cyclic heating systems.
    • Customizable flanged edges and precision bending enable seamless integration into complex furnace designs.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard industrial chimneys and kilns operating below 1650°C.
    • Advanced Model: Recommended for medium-scale blast furnaces requiring enhanced thermal shock resistance (e.g., glass manufacturing).
    • Pro Model: Designed for extreme environments like steel smelting or high-temperature chemical processing. Its 65% Al₂O₃ content and 1770°C refractoriness ensure unmatched durability.

With the Pro Model’s 65% Al₂O₃ content, you can safely handle molten metals, while the Base Model’s cost-effective design suits routine construction needs. Pair the Advanced Model’s thermal shock resistance with its bending capabilities to create custom furnace linings.

Frequently asked questions

  • Which refractory brick model suits blast furnace chimney construction?

  • How to maintain refractory bricks in high-temperature environments?

  • Alumina vs. silica in refractory bricks: Which is better for blast furnaces?

  • Can refractory bricks be customized for chimney flange designs?

  • Is this brick compliant with industrial safety standards?

  • What makes your clay bricks suitable for blast furnace chimneys?

  • How does Cro content affect refractory brick durability?

  • Are technical drawings available for refractory brick installations?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionBlast Furnaces, KilnsChromium Content: 45% (Industry) ▲50% (Base) ▲▲65% (Advanced) (ASTM C24)Base: 15% higher Cr for durability; Advanced: 44% higher for extreme useAdvanced: Higher cost due to Cr content
RefractorinessHigh-Temperature Industrial PlantsRefractoriness: 1500°C (Industry) ▲1580°C (Base) ▲▲1700°C (Advanced) (ISO 5950)Base: Handles most industrial temps; Advanced: Withstands extreme heatBase may fail in ultra-high temp environments
Chemical ResistanceChemical Processing PlantsPasses ASTM F739 (Base) ▲▲ASTM C697 (Advanced) (50+ chemical exposures tested)Base: Resists common chemicals; Advanced: Tolerates aggressive acids/alkalisBase insufficient for highly corrosive environments
Thermal Shock ResistanceGlass ManufacturingThermal Cycles: 5 (Industry) ▲10 (Base) ▲▲15 (Advanced) (ISO 12809)Base: 100% better cycle performance; Advanced: 200% improvement over standardAdvanced requires specialized installation techniques
CustomizationTailored Industrial InstallationsCustom Shapes: Standard (Industry) ▲Bending/Cutting (Base) ▲▲Full Logo Options (Advanced)Base: Quick shape adjustments; Advanced: Full design integrationCustom orders may delay project timelines
CertificationsGlobal Compliance MarketsCE (Industry) ▲CE+MSDS (Base) ▲▲CE+ISO 9001 (Advanced)Base: Simplifies EU imports; Advanced: Meets global regulatory benchmarksAdvanced certification adds 10–15% to production cost

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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.