High-Quality Silicon Carbide Products | Advanced Ceramic Solutions
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Description
Overview of Silicon Carbide Ceramic
Silicon carbide (SiC) ceramic is a high-performance material known for its exceptional hardness, wear resistance, and thermal stability. It is widely used in cutting tools, abrasives, automotive components, and high-temperature applications due to its superior mechanical properties and chemical inertness.
Features of Silicon Carbide Ceramic
High Hardness: SiC ceramics are among the hardest known materials, making them ideal for abrasive and cutting applications.
Thermal Stability: They can withstand extreme temperatures without degrading, making them suitable for high-temperature environments.
Wear Resistance: Exceptional resistance to wear and abrasion ensures long-lasting performance.
Chemical Inertness: Resistant to most chemicals, including acids and alkalis, enhancing their durability in harsh conditions.
Low Thermal Expansion: Minimal expansion or contraction with temperature changes, ensuring dimensional stability.
Electrical Conductivity: Some forms of SiC ceramics exhibit semiconducting properties, useful in electronic devices.
(Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile)
Specifications of Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile
Customized Hexagonal Silicon Carbide (SiC) Plate Refractory Porcelain Shingles are engineered for high-performance applications calling for exceptional thermal, mechanical, and chemical resistance. These tiles are crafted from premium-grade silicon carbide, a product renowned for its sturdiness, high thermal conductivity, and ability to endure extreme temperatures. The hexagonal design guarantees effective protection and architectural stability in demanding atmospheres. Key requirements include: ** Material Make-up **: Primarily composed of silicon carbide (SiC) with a pureness of ≥ 98%, making certain premium solidity (Mohs solidity of 9.5) and resistance to abrasion. Additives like sintering aids or bonding representatives might be included to improve density and thermal shock resistance. ** Capacities **: Adjustable hexagonal plates with standard side sizes varying from 20mm to 100mm and thicknesses from 10mm to 50mm. Resistance for measurements is usually within ± 1% to guarantee exact fitting. ** Thermal Properties **: Running temperatures as much as 1600 ° C in oxidizing environments and 1800 ° C in inert/reducing environments. Low thermal expansion coefficient (4.5 × 10 ⁻⁶/ ° C) minimizes cracking under rapid temperature level modifications. Thermal conductivity arrays from 50-120 W/m · K, allowing effective warmth distribution. ** Mechanical Stamina **: High compressive stamina (≥ 2000 MPa) and flexural stamina (≥ 300 MPa) ensure structural stability under mechanical stress and anxiety. ** Chemical Resistance **: Resistant to deterioration from acids, alkalis, and molten steels, making them perfect for severe commercial settings. ** Applications **: Utilized in kilns, heating systems, incinerators, metallurgical cellular linings, and aerospace parts. Appropriate for thermal insulation, wear-resistant linings, and radiant burner plates. ** Customization Choices **: Readily available in varying porosity degrees (5%-15%) to stabilize thermal insulation and leaks in the structure. Surface area treatments like glazing or anti-oxidation finishings can be used. Openings, grooves, or interlacing sides are adjustable for certain setup requirements. ** Product packaging **: Separately covered to avoid cracking, shipped in enhanced pet crates. ** Certifications **: Certified with ISO 9001, ASTM C611, and industry-specific refractory criteria. These floor tiles integrate long life with flexibility, offering customized services for markets needing reliable refractory porcelains under severe operational conditions.
(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 tiles are crafted for extreme atmospheres, combining premium thermal, mechanical, and chemical buildings. Their hexagonal geometry guarantees seamless interlocking, ideal thermal distribution, and architectural security, making them optimal for sectors requiring high-temperature resistance, durability, and rust security.
In metallurgical applications, these floor tiles line heating systems, kilns, and activators, securing devices from temperature levels surpassing 1600 ° C. Their high thermal conductivity and shock resistance minimize warmth loss and breaking, enhancing power effectiveness and furnace life-span. The hexagonal layout allows consistent expansion under thermal stress, lowering maintenance downtime in steelmaking or non-ferrous steel handling.
Foundries use hexagonal SiC tiles in ladles, crucibles, and putting systems for molten steel handling. Their non-wetting surface area stops steel bond, making certain tidy puts and minimizing material waste. Custom-made density and curvature fit complicated mold and mildews, enhancing functional accuracy.
Power generation plants deploy these floor tiles in boilers, cyclones, and incinerators revealed to rough gas or waste. SiC’s disintegration resistance withstands fly ash and aggressive flue gases, while its thermal security keeps structural integrity in fluctuating temperature levels. Waste-to-energy facilities take advantage of decreased wear in high-ash environments.
Chemical and petrochemical sectors rely upon SiC floor tiles for reactors, reformers, and warmth exchangers managing corrosive acids, antacid, and hydrocarbons. Their inertness prevents chemical deterioration, making certain safety and security and durability in aggressive procedures like catalytic breaking or sulfur recovery.
Aerospace and advanced design industries make use of tailored hexagonal ceramic tiles for thermal defense systems, such as rocket nozzles and thermal barrier. SiC’s light-weight yet durable nature endures severe aerodynamic heating and mechanical anxiety during re-entry or propulsion.
Customization alternatives include customized dimensions, porosity, and placing systems to fit distinct tools geometries. This versatility makes sure optimum efficiency in rounded surface areas or irregular formats. Boosted thermal monitoring reduces energy intake, while long term service life lowers replacement costs.
Hexagonal SiC refractory ceramic tiles are a cost-effective remedy for industries prioritizing performance and dependability in severe conditions. Their mix of thermal durability, chemical inertness, and personalized design makes them vital for modern-day high-temperature applications.
Company Introduction
Welcome to It-Chuiko, a premier international supplier of high-quality silicon carbide powder and silicon carbide ceramics. Our products are renowned for their exceptional hardness, thermal stability, and wear resistance, making them ideal for abrasives, cutting tools, refractory materials, and advanced semiconductor applications. We serve a diverse range of industries, including automotive, aerospace, and electronics, with a commitment to quality and innovation. With state-of-the-art production facilities and rigorous quality control, we ensure that our customers receive superior products tailored to their specific needs. Partner with us for reliable, high-performance materials that drive your business forward.
If you have any questions, 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
**What are the key benefits of using customized hexagonal silicon carbide (SiC) plate refractory ceramic tiles?**
Customized hexagonal SiC refractory tiles offer exceptional thermal conductivity, high resistance to thermal shock, and superior corrosion resistance. Their hexagonal design ensures tight interlocking during installation, minimizing gaps and improving structural stability in high-temperature environments. They are also highly durable, with low thermal expansion, making them ideal for furnaces, kilns, and incinerators.
**Can these tiles be tailored to specific sizes or shapes?**
Yes. The primary advantage of hexagonal SiC plates is their customization capability. Manufacturers can adjust dimensions, thickness, edge angles, and hole patterns to fit unique industrial setups. Common sizes range from 50mm to 200mm in width, but bespoke designs are achievable based on application requirements.
**What temperature range can these tiles withstand?**
Hexagonal SiC refractory tiles operate effectively in temperatures up to **1600°C (2912°F)** in oxidizing environments and **1400°C (2552°F)** in reducing atmospheres. Their high melting point and thermal stability make them suitable for extreme-heat applications like steelmaking, glass production, and chemical processing.
**How are these tiles installed and maintained?**
Installation involves arranging the hexagonal tiles in an interlocking pattern using high-temperature-resistant mortar or mechanical fasteners. Their geometry simplifies alignment and reduces installation time. Maintenance is minimal due to their wear resistance, but periodic inspections for cracks or erosion in high-abrasion zones are recommended. Damaged tiles can be replaced individually without dismantling entire sections.
**Are customized SiC tiles cost-effective compared to traditional refractory materials?**
While the upfront cost of SiC tiles is higher than alumina or fireclay, their longevity and performance justify the investment. They reduce downtime due to frequent replacements, resist chemical degradation, and maintain structural integrity over time. Energy efficiency from their superior thermal conductivity also lowers operational costs in heating applications.
(Customized Hexagonal Silicon Carbide SIC Plate Refractory Ceramic Tile)
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