In industrial scenarios characterized by high temperatures, heavy wear, and strong corrosion, reaction-sintered silicon carbide (SiC) square beams stad silicon carbide (SiC) square beams stand out as the preferred solution for load-bearing structures due to their exceptional performance. Leveraging advanced reaction sintering technology, these beams form a uniformly dense microstructure internally, boasting a flexural strength of over 450MPa and an elastic modulus exceeding 400GPa at room temperature. They can withstand high-intensity loads for extended periods without deformation, addressing the common pain points of traditional metal beams (prone to bending) and ceramic beams (prone to brittleness and cracking).
The product exhibits outstanding high-temperature stability, retaining more than 80% of its room-temperature strength even in environments up to 1300°C. This allows direct application in high-temperature production lines such as ceramic kilns and metallurgical roasting equipment. Meanwhile, the silicon carbide material inherently resists corrosion from strong acids and alkalis, and its smooth surface prevents scaling. Compared to stainless steel beams, its service life is extended by 3 to 5 times, significantly reducing equipment maintenance costs.
With precisely controllable cross-sectional dimensions (ranging from 25×25mm to 100×100mm for standard models) and customizable lengths, the beams.
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