Corundum-Based Honeycomb Ceramic Heater for Rto System

Product Details
Customization: Available
Size: 100*100*100, 150*150*150, 150*150*300
Hole Shape: Round, Square, Hexagonal, Triangular
Gold Member Since 2013

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  • Corundum-Based Honeycomb Ceramic Heater for Rto System
  • Corundum-Based Honeycomb Ceramic Heater for Rto System
  • Corundum-Based Honeycomb Ceramic Heater for Rto System
  • Corundum-Based Honeycomb Ceramic Heater for Rto System
  • Corundum-Based Honeycomb Ceramic Heater for Rto System
  • Corundum-Based Honeycomb Ceramic Heater for Rto System
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Basic Info.

Model NO.
HCS
Max.Working Tem. (Celsius Degree)
1320-1700
Principle
Regenerative Heat Exchanger
Structure Material
Ceramic
Application
Heater
Heat Transfer Surface
Plate Heat Exchanger
Transport Package
Wooden Box/Carton Box with Pallet
Trademark
DXY
Origin
China
Production Capacity
50cbm/Month

Product Description

Corundum-Based Honeycomb Ceramic Heater for Rto System
Corundum-based Honeycomb Ceramic Heat Accumulation Substance
It's features of corrosion resistances, large specific surface area, small heat 
resistance, good thermal conductivity and excellent thermal-shock resistance, fast heat exchanging and energy saving. It's widely used in many fields.

The honeycomb ceramic as the heat exchange media is the key part for heat storing HTAC 
( High Temperature Air Combustion) technology. It is the best choice for RTO,  heat exchanger 
and other environmental protection and energy saving products.

Characterics:
1. low thermal expansion     
2. large specific heat capacity  
3. high specific surface area   
4. low pressure drop         
5. small thermal resistance    
6. good thermal conductivity  
7. good heat-shock resisting ability

Application:  iron and steel, metallurgy, petrochemical, electric power, boiler and Fuel elecric plant, Thermal power plant,theheat power station 
etc.


Corundum-Based Honeycomb Ceramic Heater for Rto System
Composition Value (%)
Al2O3 70-80
SiO2 15-25
MgO 0-2
Fe2O2+TiO2 1-3
Others <5

Index Unit Value
Density  g/cm3 2.3-2.7
Coefficient of heat expansion (X10-6K-1) (20-800celsius degree) ≤6
Specific Heat (J/Kg.k) (20~1000celsius degree) 1100~1300
Thermal Conductivity (20~1000celsius degree) 1.5~2.0
Impact Thermal Resistance (celsius degree/min) ≥300
Max.Working Temp. celsius degree 1550
Water absorption % 15~25

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