HENAN ZG INDUSTRIAL PRODUCTS CO.,LTD

HENAN ZG INDUSTRIAL PRODUCTS CO.,LTD

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Customized High-Strength Reaction-Sintered Silicon Carbide Square Beam Support With High Temperature Resistance Up To 1380°C

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HENAN ZG INDUSTRIAL PRODUCTS CO.,LTD
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Customized High-Strength Reaction-Sintered Silicon Carbide Square Beam Support With High Temperature Resistance Up To 1380°C

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Brand Name :ZG
Model Number :MS
Certification :CE
Place of Origin :China
MOQ :1 PC
Price :10USD/PC
Payment Terms :L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability :1000 PCS
Delivery Time :7 work days
Packaging Details :Strong wooden box for Global shipping
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Customized High-Strength Reaction-Sintered Silicon Carbide Square Beam Support with High Temperature Resistance up to 1380°C

Description:

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.

Typical application:

Load-bearing structure of industrial kilns

Feature:

1. Light weight, energy saving.

2. Long service life.

3. High heat transfer efficiency.

4. High temperature non-deformation.

The physical properties of reaction sintered silicon carbide ceramics products:

Physical properties Unit SSiC
Density g/cm3 ≥3.02
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

Beam Load-Bearing Capacity Table:

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:

  • Concentrated load = Value from table × 1m × L
  • Resultant force of uniformly distributed load = Value from table × 1m × L

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

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