Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

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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.

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Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

Specifications of Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

Whole Silicon Carbide Ceramic (SiC) Floor Tiles– Hexagonal Plate Specifications

Product Composition

These floor tiles are made from 100% pure silicon carbide (SiC). No binders or ingredients are used. The material is sintered at heats to create a thick, solid structure. This provides the ceramic tiles outstanding solidity and thermal stability.

Physical Properties

The density of the tiles varies from 3.10 to 3.15 g/cm ³. Their firmness is around 2800– 3000 HV on the Vickers scale. This makes them among the hardest technological porcelains readily available. The flexural strength is typically 350– 450 MPa. They additionally reveal solid resistance to wear and abrasion in harsh settings.

Thermal Performance

These SiC hex plates take care of heat extremely well. They can work continually at temperature levels as much as 1600 ° C in inert atmospheres and regarding 1400 ° C in air. Their thermal conductivity is high– in between 80 and 120 W/m · K– so they move heat rapidly and uniformly. The coefficient of thermal expansion is low (regarding 4.5 × 10 ⁻⁶/ ° C), which suggests they remain steady during fast temperature level modifications.

Chemical Resistance

Silicon carbide withstands most acids, alkalis, and molten salts. It does not corrode conveniently, also in aggressive chemical settings. Nevertheless, it might react with strong oxidizing representatives at very high temperatures.

Dimensions and Tolerances

Requirement hexagonal tiles been available in sizes from 25 mm to 150 mm across apartments. Thickness choices variety from 3 mm to 20 mm. All dimensions follow tight resistances: ± 0.1 mm for thickness and ± 0.2 mm for size, unless custom-made specs are requested.

Surface Complete

Both faces of the ceramic tile are ground smooth. The basic surface area roughness is Ra ≤ 0.8 µm. Customized coatings like lapping or polishing are additionally readily available upon demand.

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Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

Applications of Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

Applications of Whole Silicon Carbide Ceramic (SiC) Floor Tiles and Hex Plates

Extreme Atmospheres Demand Reliable Products

Entire silicon carbide ceramic floor tiles and hex plates perform well where various other products fail. They manage extremely high temperatures without losing toughness. These components remain secure even when heated up above 1,400 ° C. That makes them suitable for heaters, kilns, and warmth therapy systems.

Put on resistance is an additional significant advantage. SiC porcelains stand up to abrasion better than many metals and standard ceramics. Industries like mining, power generation, and material handling utilize these tiles to protect surface areas from consistent wear. Conveyor chutes, cyclones, and grinding mills take advantage of longer service life when lined with SiC ceramic tiles.

Deterioration Resistance for Harsh Chemicals

These porcelains do not react with acids, alkalis, or solvents under regular problems. Chemical handling plants set up SiC hex plates in pumps, valves, and cellular linings. The material keeps functioning even when exposed to aggressive fluids. This minimizes maintenance expenses and stays clear of unanticipated shutdowns.

Thermal shock resistance sets SiC apart. Unlike several porcelains, it can go from cold to warm promptly without splitting. This quality is vital in applications with quick temperature level adjustments– like steel casting or glass production. Hex plates made from solid SiC preserve stability via duplicated home heating and cooling cycles.

Precision Engineering Fulfills Durability

Manufacturers produce entire SiC tiles and hex plates to tight tolerances. Each item fits precisely in complicated settings up. The consistent structure guarantees constant performance throughout large installments. Whether used as structural supports, protecting obstacles, or wear shields, these components deliver dependability you can depend on.

Industries select full-body silicon carbide– not layered or composite versions– since performance should be ensured via the entire density. When failure is not an option, solid SiC floor tiles and hex plates are the clear option.

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.

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Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

5 FAQs of Whole Silicon Carbide Ceramic SIC Tiles Ceramic hex Plate

What are Whole Silicon Carbide Ceramic SiC Tiles?

Whole Silicon Carbide (SiC) ceramic tiles are made from 100% silicon carbide with no added binders or fillers. They are shaped into solid hexagonal plates that offer high strength, excellent heat resistance, and strong wear performance. These tiles are used in tough industrial environments where regular materials would fail.

Why choose a hexagonal shape?

The hexagonal design allows the tiles to fit together tightly with minimal gaps. This creates a smooth, continuous surface that resists cracking and shifting under stress. It also makes installation easier and more efficient compared to square or rectangular shapes.

Where are these tiles commonly used?

These SiC tiles work well in areas that face extreme heat, abrasion, or chemical exposure. Common uses include kiln linings, furnace floors, burner nozzles, and wear-resistant surfaces in mining or power plants. Their stability at high temperatures makes them ideal for thermal processing equipment.

How do they handle high temperatures?

Silicon carbide keeps its strength even above 1400°C (2550°F). Unlike metals or standard ceramics, SiC tiles do not soften, warp, or degrade quickly under intense heat. They also conduct heat well, which helps maintain even temperature distribution across surfaces.

Are they easy to install and maintain?

Yes. The uniform size and interlocking hex shape make installation straightforward. Once in place, the tiles need very little maintenance. They resist corrosion, staining, and erosion, so cleaning is simple and infrequent. Their long service life reduces replacement costs over time.

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