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Reaction-sintered silicon carbide, silicon carbide nozzles, radiation tubes, burners, heat-exchange tubes, silicon carbide furnace tubes, burners, silicon carbide plates

Silicon Carbide Furnace Tube Manufacturer—Weifang Huamei Fine Technology Ceramics


Release time:

2022-06-06

  Weifang Huamei Fine Technology Ceramics Co., Ltd. was established in 1995 and is a leading enterprise in the national silicon carbide products industry. It is the first domestic company specializing in the production of reaction-sintered silicon carbide products and a national high-tech enterprise.


 Silicon carbide furnace tube


  Our company primarily manufactures high-tech silicon carbide ceramic products. Our main products include reaction-sintered silicon carbide, silicon carbide cylinders, silicon carbide impellers, silicon carbide nozzles, crystal boats, rollers, square beams, and silicon carbide plates. Silicon carbide furnace tube  Heat exchange tubes, silicon carbide ceramics, and pressureless-sintered silicon carbide products.

  Silicon carbide is an excellent corrosion-resistant material that we can use to manufacture products such as furnace tubes. When silicon carbide is used to make furnace tubes, several sintering methods are available, and the most suitable one can be selected based on the specific processing environment to enhance efficiency. Hot pressing and high-temperature isostatic pressing can produce high-density silicon carbide furnace tubes, with sintering temperatures ranging from 150°C to 2100°C. Silicon carbide is challenging to manufacture due to its complex shapes and high costs. Reaction-sintered silicon carbide is produced from a green body composed of a certain proportion of -SiC and graphite powder; upon heating, this green body transforms into -SiC. Furnace tubes made by this method have lower firing temperatures. They exhibit outstanding properties, including high strength, high hardness, resistance to high temperatures, wear resistance, corrosion resistance, oxidation resistance, thermal shock resistance, good thermal conductivity, resistance to rapid temperature changes, and resistance to high-temperature creep.

  These materials—widely used in industries such as military industry, aerospace, electronic semiconductors, liquid crystal displays, new-energy vehicles, photovoltaic solar energy, metallurgy, chemical engineering, machinery, papermaking, and pharmaceuticals—are essential industrial materials that offer high-temperature resistance, thermal shock resistance, wear resistance, and corrosion resistance across numerous fields. In particular, in recent years, the company’s product market has continued to expand. Silicon carbide furnace tube Its application fields are becoming increasingly broad, and it is exported to more than 20 countries and regions worldwide. Silicon carbide ceramics, silicon carbide furnace tubes, burners, heat-exchange tubes, radiation tubes, silicon carbide plates, silicon carbide blades, silicon carbide pipes, and reaction-sintered silicon carbide—all these materials are suitable as corrosion-resistant materials for nearly all applications and industrial sectors that demand high-temperature resistance, thermal shock resistance, and abrasion resistance.

  The company primarily manufactures high-tech silicon carbide ceramic products and... Silicon carbide furnace tube Our main products include reaction-sintered silicon carbide and pressureless-sintered silicon carbide. The company has established six research platforms at or above the provincial level, spearheaded the formulation and revision of two national standards and 11 industry standards, and holds more than 90 authorized patents. Over the years, the company has placed great emphasis on the R&D of new technology products. Several of our scientific and technological achievements have broken foreign technological monopolies. In particular, in recent years, we have made significant breakthroughs in addressing the “shortage of chips and shortage of wafers,” and the development of pressureless silicon carbide products has gradually achieved iterative upgrades.