Payment Terms | L/C,D/A,D/P,T/T,Western Union,MoneyGram |
Supply Ability | 2,000 pcs/month |
Packaging Details | Strong wooden box for Global shipping |
Material | SiC |
Composition:SiC | >85% |
Color | Black |
Density | ≥3.0g/cm3 |
Max. Service Temp | 1380℃ |
Flexural Strength | 250MPa |
Brand Name | KEGU |
Place of Origin | China |
Model Number | Customizable |
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Product Specification
Payment Terms | L/C,D/A,D/P,T/T,Western Union,MoneyGram | Supply Ability | 2,000 pcs/month |
Packaging Details | Strong wooden box for Global shipping | Material | SiC |
Composition:SiC | >85% | Color | Black |
Density | ≥3.0g/cm3 | Max. Service Temp | 1380℃ |
Flexural Strength | 250MPa | Brand Name | KEGU |
Place of Origin | China | Model Number | Customizable |
High Light | Reaction Sintered Silicon Carbide ,Silicon Carbide Square Beam Support ,Sintered Silicon Carbide Beam Support |
This product is manufactured using reaction sintering technology, boasting exceptional strength, high temperature resistance, corrosion resistance, and thermal shock resistance. It is ideally suited for use as a load-bearing structural framework in shuttle kilns, tunnel kilns, and various high-temperature kiln applications. It maintains stable performance at temperatures up to 1380°C. Customized sizes and end processing are available to cater to diverse needs.
Load-bearing structure of industrial kilns
1. Light weight, energy saving.
2. Long service life.
3. High heat transfer efficiency.
4. High temperature non-deformation.
Physical properties | Unit | SSiC | |
Density | g/cm3 | ≥3.0 | |
Open Porosity | Vol% | 0.2 | |
Vickers Hardness HV1 | kg/mm2 | ≥2100 | |
Flexural Strength | 20°C | MPa | 250 |
1200°C | MPa | 280 | |
Coficient of Thermal Expansion | 10-6K-1 | 4.5 | |
Thermal Conductivity(1200°C) | Wm-1K-1 | 45 | |
Modulus of Elasticity @ RT | GPa | 330 | |
Max. Temperature of Application | ℃ | 1380 |
The bending strength of reaction-sintered silicon carbide beams is calculated based on 250 MPa, with a 5-fold safety factor. The bearing capacity is determined for a length of 1 meter. When the product length is L, the bearing capacity can be calculated using the following formulas:
This bearing capacity applies to temperatures below 1380℃.
Cross-sectional dimensions(mm) |
Thickness (mm) |
Concentrate load (kg) |
Evenly distribute load (kg) |
|||
B | H | B | H | B | H | |
30 | 30 | 5 | 74 | 74 | 147 | 147 |
30 | 40 | 5 | 117 | 95 | 235 | 190 |
40 | 40 | 5 | 149 | 149 | 298 | 298 |
50 | 50 | 6 | 283 | 283 | 567 | 567 |
50 | 60 | 6 | 374 | 331 | 748 | 662 |
60 | 60 | 7 | 481 | 481 | 962 | 962 |
Company Details
Business Type:
Manufacturer
Year Established:
2017
Total Annual:
800-850
Employee Number:
60~70
Ecer Certification:
Verified Supplier
As a leading advanced materials developer in China, we are established in 2017 with a registered capital of 35.5 million RMB (≈5 million USD) and strategically located in Xixian New District's Qinhan New City, adjacent to major transportation hubs including Xianyang East Expressway. Our team ... As a leading advanced materials developer in China, we are established in 2017 with a registered capital of 35.5 million RMB (≈5 million USD) and strategically located in Xixian New District's Qinhan New City, adjacent to major transportation hubs including Xianyang East Expressway. Our team ...
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