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Honeycomb Ceramic Regenerator
Brand: HongTai Refractory
Category: Mullite Insulation Bricks
Size: Standard size or customized size
Payment Terms: T/T, Credit Cards, e-Checking, Alibaba Trade Assurance
Product Information
Honeycomb ceramic regenerators offer significant benefits in terms of efficiency, energy conservation, output enhancement, and quality improvement, making them a crucial and effective solution in the context of energy and environmental considerations.
They are widely employed in industrial thermal equipment to achieve energy savings. The pores of honeycomb ceramic regenerators exhibit a combination of square and hexagonal shapes, with straight and parallel channels. This specific structure effectively minimizes air resistance and maximizes heat exchange efficiency across all channels.
Product Name | Corundum Mullite Regenerator Honeycomb Ceramic |
Color | white |
Quantity of hole | 25×25, 32×32, 40×40, 43×43,50×50,60×60 |
Work Temperature | 1700℃ |
Material | Corundum mullite |
Application | Steel plant, waste incinerator, waste gas treatment thermal equipment, chemical plant, metallurgical plant, power industrial boiler, gas turbine, engineering heating equipment, ethylene cracking furnace, etc. |
Service | OEM/ODM |
Sample | Free provided |
Package | 1.Pallet+Plastic or Steel belt +Plastic film (1)Wooden pallet size: 0.93*0.93m(standard brick) (2)Load weight of each pallet:Usually 1.5-1.7Tons, but 2.0 Tons at most. (3)20 Foot Container can be loaded 25-26Tons at most,about 13-16Pallets. 2.It’s available to package according to customer’s requirements. |
Size (mm) | Quantity of channels | Wall thickness | Channel Width | Surface area | Void section | Packaging density | Weight per piece |
150×150×300 | 25×25 | 1.0mm | 4.96mm | 580m2/m3 | 68% | 696kg/m3 | 4.7kg |
150×150×300 | 40×40 | 0.7mm | 3.03mm | 891m2/m3 | 65% | 814kg/m3 | 5.5kg |
150×150×300 | 50×50 | 0.6mm | 2.39mm | 1090m2/m3 | 63% | 903kg/m3 | 6.1kg |
150×150×300 | 60×60 | 0.5mm | 1.99mm | 1303m2/m3 | 63% | 932kg/m3 | 6.3kg |
150x100x100 | 40×40 | 1mm | 2.5mm | 784m2/m3 | 49% | 799kg/m3 | 1.2kg |
150x100x100 | 33×33 | 1.1mm | 3.0mm | 691m2/m3 | 52% | 750kg/m3 | 1.13kg |
150x100x100 | 20×20 | 2.0mm | 5.0mm | 392m2/m3 | 49% | 692kg/m3 | 1.04kg |
100x100x100 | 40×40 | 1.0mm | 2.5mm | 784m2/m3 | 49% | 810kg/m3 | 0.81kg |
100x100x100 | 33×33 | 1.1mm | 3.0mm | 691m2/m3 | 52% | 750kg/m3 | 0.75kg |
100x100x100 | 20×20 | 2.0mm | 5.0mm | 392m2/m3 | 49% | 680kg/m3 | 0.68kg |
Material | Loose Cordierite | Dense Cordierite | Cordierite Mullite | Mullite | Corundum Mullite |
Al2O3, % | 33-35 | 35-37 | 33-35 | 59-61 | 69-72 |
SiO2, % | 48-50 | 48-50 | 48-51 | 37-39 | 28-30 |
Thermal Expansion (Room Temp.-1000%)×10-6/℃ | 1.5-1.8 | 2-2.5 | 2.0-3.0 | 4.2-5.0 | 4.5-5.2 |
Thermal Capacity(Room Temp.-1000℃), J/kg | 750-900 | 800-1200 | 1100-1300 | 1100-1300 | 1300-1400 |
Heat Shock Resistance ℃ | 300 | 250 | 300 | 230 | 260 |
Softening Temperature℃ | 1280 | 1350 | 1400 | 1630 | 1680 |
Refractoriness ℃ | 1360 | 1410 | 1480 | 1750 | 1790 |
Max Service Temperature | 1200 | 1300 | 1350 | >1550 | >1600 |
- Structure: Honeycomb, interconnected channels, efficient airflow.
- Heat Exchange Efficiency: Optimal contact, efficient heat transfer.
- Low Resistance: Smooth airflow, reduced pressure drop.
- Thermal Stability: Excellent heat resistance.
- Chemical Resistance: Highly resistant to corrosion.
- Durability: Long service life.
- Versatility: Wide range of applications.
Application | Description |
---|---|
Burner Blocks | HCRBs improve combustion efficiency and reduce emissions in industrial furnaces and kilns. |
Heat Storage | HCRBs store and release heat efficiently in refractory materials for high-temperature applications. |
Thermal Shock Resistance | HCRBs prevent cracking and spalling of refractory linings in industrial furnaces and kilns. |
Insulation | HCRBs provide excellent thermal insulation properties, reducing heat loss and improving energy efficiency in industrial furnaces and kilns. |
Catalyst Support | HCRBs promote chemical reactions and improve process efficiency as catalyst supports in refractory materials for high-temperature applications. |