JUNGIE

JUNGIE

Honeycomb Ceramic

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Porous industrial ceramic products are characterized by a large specific surface area, low airflow resistance, a low coefficient of thermal expansion, and excellent thermal conductivity and thermal shock resistance.

Category:

Environmental

Keywords:

Environmental


  • Describe
  • Specifications
  • Physical Properties
    • HONEYCOMB CERAMIC

    Product Introduction Introduction

    HIGHLIGHTS

    Porous industrial ceramic products are characterized by a large specific surface area, low airflow resistance, a low coefficient of thermal expansion, and excellent thermal conductivity and thermal shock resistance.

    Made of mullite-cordierite material.

    Hole shape: square, hexagonal; hole count: customizable per customer requirements (14–400 holes per square inch).

    Widely used in organic waste gas treatment systems in the environmental protection industry—regenerative thermal oxidizers (RTOs) and catalytic oxidation reactors (RCOs).

    Products can be manufactured in various specifications and materials according to customer requirements.

  • Product Specifications

    PRODUCT PARAMETERS

    Project Unit Indicator
    Number of holes/Section n 25×25 40×40 43×43 50×50 60×60
    Length × Width × Height mm 150×150×150 150×150×300
    Wall thickness mm 1.0 0.7 0.65 0.60 0.50
    Specific surface area m²/m³ 550 860 950 1070 1260
    Porosity % 67 65 65 63 63
    Stacking weight kg/m³ 600-650 650 650 750 750
  • Physical Properties

    PHYSICAL PROPERTIES

    Project Unit Indicator
    Material density g/cm³ 1.8–2.2
    Water absorption rate % ≤15
    Coefficient of thermal expansion times 10 -6 /K 4.0–6.0
    Specific heat capacity J/kg·K 800-1050
    Compressive strength megapascal ≥6.0 (axial)
    ≥6.0 (lateral)
    Thermal shock resistance °C ≥350
    Load-Softening Temperature °C 1300

     

    Composition Indicator (%) Indicator (%)
    All 2 O 3 40-50 55-65
    Silicon dioxide 2 45-55 30-40
    Magnesium oxide 2.0-6.0 0.0-2.0
    Fe 2 O 3 ≤1.5 ≤1.5
    K 2 O+NaO ≤4.0 ≤4.0

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