Customization: | Available |
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Feature: | Long Time Materials |
Refractoriness (℃): | 1400 C |
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Rectangular shape | |||
Model# | Length(mm) | Width(mm) | Thickness(mm) |
JH205155 | 205 | 155 | 13 |
JH200150 | 200 | 150 | 13 |
JH200145 | 200 | 145 | 13 |
JH188138 | 188 | 138 | 13 |
JH185064 | 185 | 64 | 13 |
JH183060 | 183 | 60 | 13 |
JH162060 | 162 | 60 | 13 |
JH147075 | 147 | 75 | 13 |
JH147060 | 147 | 60 | 13 |
JH146075 | 146 | 75 | 13 |
JH137060 | 137 | 60 | 13 |
JH136095 | 136 | 95 | 13 |
JH135095 | 135 | 95 | 13 |
JH130075 | 130 | 75 | 13 |
Remark: Support customized sizes according to customers' drawings. |
Circular shape | ||
Model# | Diameter(mm) | Thickness(mm) |
JHD238 | φ238 | 13 |
JHD200 | φ200 | 13 |
JHD180 | φ180 | 13 |
JHD170 | φ170 | 13 |
JHD168 | φ168 | 13 |
JHD160 | φ160 | 13 |
JHD158 | φ158 | 13 |
JHD150 | φ150 | 13 |
JHD059 | φ59.5 | 13 |
JHD038 | φ38 | 13 |
The typical application of infrared honeycomb ceramic plate
Barbecue gas grill | Broiler burners | Convection ovens | Deep fat fryer | Pizza ovens |
Gas ovens | Gyro cookers | Pressure fryers | Cheese melters | Salamanders |
Gas heater | Rotisserie oven | Painting drying | Waste heat treatment equipment | Power plant |
The gallery of infrared honeycomb ceramic plate
The main features of infrared honeycomb ceramic plate
1. High thermal shock resistance, 2. Super specific heat capacity, 3. Large specific surface area, 4. Small pressure drop,
5. Low thermal resistance 6. Good thermal conductivity
The description of infrared honeycomb ceramic plate
Cordierite honeycomb ceramic plates are widely used in energy-saving technologies for industrial thermal equipment, making industrial thermal equipment more efficient, reducing energy consumption, increasing production, and improving quality. It is an important and effective means to solve energy and environmental problems. The cross-section holes of the honeycomb ceramic plate mainly have two kinds of hole structures a square shape and a regular hexagon shape, and the holes are straight channel structures parallel to each other. This structure greatly reduces the resistance of the pores flowing through and greatly improves the single-pore volume heat exchange efficiency of the regenerator.