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Description
Overview of Silicon Carbide Ceramics
Silicon Carbide (SiC) ceramics are renowned for their outstanding mechanical properties, including high hardness, strength at elevated temperatures, and excellent thermal shock resistance. These materials are pivotal in cutting-edge industrial applications, from abrasives to aerospace components, due to their unique combination of properties.
Features of Silicon Carbide Ceramics
High Hardness: Exceptional wear resistance.
Thermal Shock Resistance: Can withstand rapid temperature changes.
Chemical Stability: Resistant to most chemicals.
High Thermal Conductivity: Efficient heat dissipation.
Low Density: Lightweight for its strength.
(Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile)
Specification of Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile
Customized Hexagonal Silicon Carbide SIC Plate Refractory Porcelain Shingles are crafted for high-temperature industrial applications. These ceramic tiles are made from costs silicon carbide material. They stand up to extreme temperature levels approximately 1600 ° C. The hexagonal layout makes sure effective heat distribution. It additionally allows limited interlocking between ceramic tiles. This lessens gaps and improves architectural stability in heaters or kilns.
The floor tiles come in adjustable dimensions. Thickness varieties from 10mm to 50mm. Side lengths range 50mm and 200mm. Surface area finishes are adjustable. Options consist of smooth, distinctive, or grooved profiles. This flexibility ensures compatibility with varied devices formats.
Silicon carbide provides phenomenal thermal conductivity. Warm transfers swiftly via the tiles. This prevents localized getting too hot. Thermal shock resistance is high. The tiles withstand quick temperature level modifications without splitting. Their reduced thermal development coefficient maintains dimensional stability. This lowers bending dangers throughout home heating cycles.
Mechanical stamina is an additional key attribute. The tiles withstand abrasion and effect. Heavy tons or vibrations in industrial settings trigger marginal wear. Chemical rust resistance is solid. Acids, antacid, and molten metals do not deteriorate the product. This extends service life in extreme environments.
Applications consist of lining metallurgical furnaces, chemical activators, and incinerators. They suit concrete manufacturing kilns and power generation systems. The tiles shield equipment from warmth damage. They additionally boost power efficiency by preserving warm within chambers.
Modification options address particular operational needs. Hole patterns or ports can be included for mounting. Edges are modifiable to fit curved surfaces. Colors vary based upon resources mixes. Technical support is available for design adjustments.
These ceramic tiles integrate durability with adaptability. They fulfill requiring industrial requirements. Performance stays consistent under extended direct exposure to extreme problems. Maintenance needs are low. Substitute periods are longer than traditional refractory materials.
The product is suitable for industries focusing on heat management and equipment defense. It uses a trustworthy service for high-temperature processes.
(Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile)
Applications of Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile
Custom-made hexagonal silicon carbide SiC plate refractory ceramic floor tiles serve in high-temperature industrial setups. These tiles take care of extreme heat, chemical exposure, mechanical anxiety. They are suitable for furnaces, kilns, incinerators, nuclear power plant. Their hexagonal shape improves surface protection, reduces gaps. This style enhances toughness, thermal security.
Silicon carbide’s homes make these floor tiles heat-resistant. They stand up to temperatures over 1600 ° C without weakening. Thermal shock resistance protects against fracturing during rapid temperature shifts. This is important in steelmaking, glass manufacturing, steel processing. The floor tiles line heater wall surfaces, safeguard devices from liquified products.
Chemical deterioration resistance fits harsh settings. Acidic gases, alkaline compounds, slag contact cause minimal damages. This makes them dependable in chemical plants, waste treatment centers. The product’s firmness stands up to abrasion from fragments, extending life span.
Mechanical toughness sustains hefty loads. The ceramic tiles preserve framework under stress in activators, boilers. Their reduced thermal conductivity boosts energy efficiency. Warm loss lowers, reducing gas prices. Personalization allows tailored sizes, densities, opening patterns. This ensures compatibility with devices layouts, simplifies setup.
Hexagonal floor tiles interlace tightly, decrease leakage threats. Warm gases, liquids remain consisted of within systems. Maintenance requires decrease as a result of wear resistance. Downtime reduces, productivity rises.
Industries select these floor tiles for long-term performance. They replace conventional products like alumina, zirconia. Expenses remain affordable regardless of sophisticated attributes. Personalized makes address certain thermal, mechanical difficulties.
Energy cost savings line up with sustainability goals. Exhaust control systems gain from reliable heat management. Waste burners attain consistent operation, meet ecological standards.
The ceramic tiles adapt to aerospace, semiconductor markets. Accuracy needs require stable products under severe problems. Silicon carbide’s pureness avoids contamination in sensitive processes.
Personalized hexagonal SiC plates use adaptability, sturdiness. They address difficulties sought after applications. Industrial procedures count on their efficiency, price performance.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. Please feel free to contact us.(nanotrun@yahoo.com)
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile
Customized Hexagonal Silicon Carbide SiC Plate Refractory Ceramic Tiles are designed for high-temperature industrial applications. Here are five common questions about these products.
What are hexagonal SiC refractory tiles made of? They are made from silicon carbide. This material is mixed with other additives. The mixture is shaped into hexagonal plates. The plates are fired at high temperatures. This makes them strong and heat-resistant.
Why choose hexagonal shapes over other designs? Hexagonal tiles fit tightly together. This reduces gaps between tiles. It creates a uniform surface. The shape helps distribute heat evenly. It also resists cracking under stress better than square or rectangular tiles.
Can these tiles handle extreme heat? Yes. Silicon carbide has a high melting point. The tiles work in environments up to 1600°C. They resist thermal shock. Sudden temperature changes cause less damage compared to other ceramics.
Are custom sizes available? Yes. Manufacturers adjust dimensions based on customer needs. Common customizations include thickness, edge length, and hole patterns. Specific requirements are discussed during ordering. Production uses molds or machining for precise results.
What industries use these tiles? They are used in furnaces, kilns, and incinerators. Metal processing plants rely on them for lining high-heat zones. Power generation equipment uses them in combustion chambers. Chemical plants install them in reactors exposed to corrosive gases.
How are the tiles installed? They are mounted using refractory mortar or mechanical fasteners. The hexagonal design allows flexible layouts. Proper installation ensures maximum heat resistance. Gaps are filled with heat-resistant cement. Regular checks prevent early wear.
(Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile)
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