Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable

Product Details
Customization: Available
Application: Aerospace, Architectural, Ceramic Decorations, Electronics, Home Use, Medical, Refractory, Semiconductor
Grain Size: 1-10um
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  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
  • Zirconia Ceramic Support for High-Temperature Trays – Corrosion-Resistant & Thermally Stable
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Basic Info.

Model NO.
100*100*3.5 140*140*3.5
Purity
99%
Type
Ceramic Plate
Main Material
Andalusite, Alumina
Working Temperature
1400ºC
Flatness
<0.5mm
Colour
Beige
V Shape Angle
Can Be Customized
Transport Package
Wooden Boxes
Specification
100× 100× 3 mm, 150*150*3
Trademark
Moat City
Origin
China
HS Code
6903900090
Production Capacity
1000000

Product Description

Zirconia Ceramic Support for High-Temperature Trays &ndash; Corrosion-Resistant &amp; Thermally StableZirconia Ceramic Support for High-Temperature Trays &ndash; Corrosion-Resistant &amp; Thermally StableZirconia Ceramic Support for High-Temperature Trays &ndash; Corrosion-Resistant &amp; Thermally StableZirconia Ceramic Support for High-Temperature Trays &ndash; Corrosion-Resistant &amp; Thermally StableZirconia Ceramic Support for High-Temperature Trays &ndash; Corrosion-Resistant &amp; Thermally StableZirconia Support Trays

Product Features

Zirconia support trays are a type of corrosion-resistant, high-temperature resistant rare-earth refractory material. They are often used as sintering pads for products such as dielectric ceramics, powder metallurgy, multilayer capacitors, and ferrite magnetic materials. These support trays are designed to prevent adhesion during the sintering of parts and to protect the electromagnetic properties of electronic components from degradation.
 

Zirconia Support Trays are high-performance ceramic components designed for use in demanding thermal processing and sintering environments. Manufactured from high-purity zirconium dioxide (ZrO2), these trays exhibit exceptional mechanical strength, outstanding thermal stability, and excellent resistance to chemical corrosion. They are engineered to withstand extreme temperatures-often exceeding 1500°C-without deformation, cracking, or structural degradation, making them ideal for repeated use in high-temperature kilns, furnaces, and laboratory settings.

The dense microstructure and fine grain size of the zirconia material ensure minimal thermal expansion, superior thermal shock resistance, and long service life. These characteristics are critical in processes such as metal and ceramic sintering, powder metallurgy, advanced materials testing, and precision thermal treatments. The trays also offer excellent wear resistance, making them suitable for applications requiring consistent dimensional stability and load-bearing performance over time.

Zirconia Support Trays are available in a range of sizes and configurations to meet diverse application needs. Custom designs can be fabricated upon request, including trays with slots, holes, or partitions to accommodate specific components or material types. Their smooth, non-reactive surfaces minimize contamination risks and support cleanroom or high-purity applications.

Typical industries that rely on zirconia trays include electronics, aerospace, dental ceramics, semiconductor manufacturing, and advanced research laboratories. Whether used for structural support during high-temperature sintering or as a stable platform for precision materials processing, zirconia support trays deliver unmatched durability and reliability in harsh environments.

Application Scope

Zirconia Support Trays



Technical Parameters

Al2O3(%) 72.50
SiO2 (%) 25.0
Fe2O3(%) 1.50
Others(%) 1.0
Suggested Working Temperature (˚C) 1400
Open Porosity (%) 20.0
Bulk Density (g/cm3) 2.70
   
   
   
   

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