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AC3285 Wear-Resistant Ceramic Sheet Al2O3 Alumina

Catalog No
AC3285
Material
Al2O3
Assay
≥95%
Density
≥3.5 g/m3

Wear-Resistant Ceramic Sheet is a product made of special corundum ceramics. Stanford Electronics has rich experience in manufacturing and supplying high-quality Wear-Resistant Ceramic Sheet.

Related products: Aluminum Silicate for Thermal Spraying, Zirconia Toughened Alumina (ZTA) Ceramic Sheet/Plate

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Wear-Resistant Ceramic Sheet Al2O3 Alumina
Wear-Resistant Ceramic Sheet Al2O3 Alumina
Description
Specifications
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AC3285 Wear-Resistant Ceramic Sheet Al2O3 Alumina Description

Wear-Resistant Ceramic Sheet Description

Wear-resistant ceramic sheets made from Al2O3 alumina are renowned for their exceptional hardness and durability, making them ideal for applications requiring superior wear protection. These ceramic sheets exhibit outstanding resistance to abrasion, erosion, and impact, significantly extending the lifespan of equipment and components. Al2O3 alumina's high thermal stability ensures that the ceramic sheets maintain their integrity and performance even under extreme temperatures. Additionally, they possess excellent chemical resistance, allowing them to withstand corrosive environments without degrading. The combination of these properties—extreme hardness, wear resistance, thermal stability, and chemical resistance—makes wear-resistant alumina ceramic sheets a top choice for enhancing the durability and efficiency of industrial equipment in demanding operational conditions.

Wear-Resistant Ceramic Sheet Specifications

Specification

Parameter

Content (Al2O3) %

≥95

Density (g/m3)

≥3.5

Rockwell Hardness

≥80 HRA

Compressive Strength

≥850 Mpa

Fracture Toughness KIC

≥4.8Mpa·m^(1/2)

Flexural Strength

≥290Mpa

Thermal Conductivity

20W/m.K

Coefficient of Thermal Expansion

7.2×10^(-6)m/m.K

 

Common Specifications

Length (mm)

Width (mm)

Thickness (mm)

10

10

3-10

17.5

17.5

3-15

20

20

4-20

24

24

10

Wear-Resistant Ceramic Sheet Applications

Wear-resistant ceramic sheets made from Al2O3 alumina are widely utilized across various industries due to their exceptional hardness, abrasion resistance, and durability. In the mining and mineral processing industries, they line chutes, hoppers, and conveyor belts to protect against wear from ores and minerals. The cement industry employs them in ball mills, separators, and clinker grinding units to withstand the abrasive action of raw materials. In power generation, these sheets protect coal handling and ash handling systems from wear and thermal conditions. The steel and metallurgy sectors use them in blast furnaces, ladles, and sintering plants for their high-temperature and abrasive resistance. In the pulp and paper industry, they line equipment to guard against wear from wood chips and pulp. Chemical processing applications use these sheets in reactors, pipelines, and storage tanks to resist chemical corrosion and wear. Bulk material handling systems incorporate them into conveyors, feeders, and discharge chutes to enhance reliability and efficiency. In agriculture, they protect grain handling and processing equipment from wear. The defense and military sectors use them in armor-plating and protective gear for impact resistance. In the automotive and aerospace industries, they improve the performance and longevity of engine parts, brake systems, and exhaust systems. Overall, wear-resistant alumina ceramic sheets enhance operational efficiency, reduce maintenance costs, and extend equipment lifespan across a broad range of demanding applications.

Wear-Resistant Ceramic Sheet Packaging

Our Wear-Resistant Ceramic Sheet is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

24-25Kg/Cardboard box

AC3285 Wear-Resistant Ceramic Sheet Al2O3 Alumina Specifications

Specification

Parameter

Content (Al2O3) %

≥95

Density (g/m3)

≥3.5

Rockwell Hardness

≥80 HRA

Compressive Strength

≥850 Mpa

Fracture Toughness KIC

≥4.8Mpa·m^(1/2)

Flexural Strength

≥290Mpa

Thermal Conductivity

20W/m.K

Coefficient of Thermal Expansion

7.2×10^(-6)m/m.K

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