Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance

Product Details
Customization: Available
Application: Aerospace, Architectural, Ceramic Decorations, Electronics, Home Use, Medical, Refractory, Semiconductor
Grain Size: 1-10um
Gold Member Since 2025

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  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
  • Alumina Ceramic Sintering Support Plate – High Purity, Wear and Thermal Resistance
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Basic Info.

Model NO.
MC-KF-CRM89
Purity
95%
Type
Ceramic Plate
Main Material
Andalusite, Alumina
Working Temperature
<1600ºC
Flatness
<0.5mm
Colour
Pure White
V Shape Angle
Can Be Customized
Transport Package
Wooden Boxes
HS Code
6909190090
Production Capacity
1000000

Product Description

Alumina Ceramic Sintering Support Plate &ndash; High Purity, Wear and Thermal ResistanceAlumina Ceramic Sintering Support Plate &ndash; High Purity, Wear and Thermal ResistanceAlumina Ceramic Sintering Support Plate &ndash; High Purity, Wear and Thermal ResistanceAlumina Ceramic Sintering Support Plate &ndash; High Purity, Wear and Thermal ResistanceAlumina Ceramic Sintering Support Plate &ndash; High Purity, Wear and Thermal ResistanceCorundum Mullite Saggers for Calcination Of 5n Alumina, Indium Oxide Ceramic Powder

Product Features
Our Corundum Mullite Saggers are expertly crafted for the precise calcination of high-purity alumina powder. Fired at an intense 1800ºC, these saggers are constructed from 99.9% high-purity alumina (Al2O3) and premium low-sodium white corundum.

With a binder boasting an exceptionally low ash content (≤ 0.01%), we prioritize meticulous control over raw materials. This ensures minimal impurities and optimal high-temperature firing, stabilizing the Al2O3 activity. The result? A saggar with a minimal thermal expansion coefficient and unparalleled chemical purity, perfect for calcining top-grade ceramic powders. Moreover, the sagger's efficient pore structure facilitates the siphoning effect during low-temperature calcination, ensuring comprehensive and effective organic matter removal.

Alumina sintering plates are high-performance ceramic components designed for use in high-temperature applications such as the sintering of electronic ceramics, structural ceramics, powder metallurgy components, and technical ceramic parts. Made from high-purity alumina (AlO), typically ≥ 99%, these plates exhibit excellent thermal stability, outstanding mechanical strength, and superior resistance to wear, corrosion, and thermal shock.

With a maximum working temperature of up to 1600°C, alumina sintering plates offer excellent dimensional stability during repeated heating and cooling cycles. Their low porosity and fine-grained microstructure ensure a smooth, flat surface that minimizes contamination and deformation of parts during the sintering process. These plates are ideal for applications that require a clean, stable, and chemically inert platform for high-temperature firing.

Alumina sintering plates are commonly used as setters or base plates in kilns and furnaces across industries such as advanced ceramics, electronics, dental materials, and new energy materials. They support and protect delicate or precision-shaped ceramic components during high-temperature treatments, ensuring uniform heat distribution and reliable processing.

Available in various sizes, thicknesses, and customized shapes, these plates can be tailored to meet specific customer requirements. Optional surface treatments, machining, and slotting can be provided to enhance gas flow, thermal uniformity, or component alignment during firing.

Alumina sintering plates combine long service life, high efficiency, and reliable performance, making them an essential material for modern high-temperature industrial processes.

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