for Melting Platinum Mullite Corundum Cordierite Sagger

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Product Overview

Description








High Performance Corundum Mullite Sagger for New Energy Lithium Batteries


Product Description

Corundum mullite sagger for lithium batteries is an essential tool in the high-temperature sintering process of lithium battery products. It provides a reliable support base for the battery material and maintains the product’s dimensional stability under high-temperature, high-pressure, and corrosive conditions. The excellent thermal stability, chemical resistance, and mechanical properties of this material make it a reliable and durable choice for the manufacture of lithium batteries.


Product Advantages 
Corundum Mullite Sagger is a high-quality refractory material that is used extensively in industries such as ceramics, metallurgy, and petrochemicals. It is made of high-purity alumina, fused mullite, fused corundum, and sintered corundum, and has excellent thermal properties, mechanical properties, and chemical properties at high temperatures.
Below are 5-10 advantages of this remarkable material:

1. High Purity: Corundum Mullite Sagger is manufactured from high-purity raw materials,
resulting in a product that is incredibly pure.
2. High Temperature Resistance: The material has excellent thermal properties, and is
able to withstand high temperatures of up to 1800℃.
3. Stable Mechanical Properties: Corundum Mullite Sagger is highly resistant to thermal
shock, has superior creep resistance, and is not easily deformed.
4. Corrosion Resistance: The material has outstanding chemical resistance and is highly
resistant to the effects of acids and alkalis.
5. Excellent Thermal Shock Resistance: Corundum Mullite Sagger has remarkable thermal
shock resistance, making it ideal for use in high-temperature applications.
6. Uniform Structure: The material has a uniform structure, which makes it highly
consistent in terms of performance.






Product Parameters


ITEM
DATA
DETECTION
Al2O3
45-65%


ICP
SIO2
30-40%
6mm-30mm or customized.
MgO
5-15%
30mm-1000mm or customized.
Fe2O3
<1%
1000mm-3000mm or customized.


Density
2.0-2.5g/cm³
Water Absorption
11-16%
Porosity
<25%
Porosity Tester
Flexural Strength
8-12MPa
Flexural Strength Testing Machine
Coefficient of Thermal Expansion
3-4.5x10-6
Thermal Expansion Instrument
Maximum Operating Temperature
1300℃
K Type Thermocouple


FAQ
Q1. What is Corundum Mullite Ceramic Sagger?
A1. Corundum Mullite Ceramic Sagger is a high-quality refractory product made of corundum and mullite, which are finely ground and mixed in a specific ratio. The mixture is then cast into different shapes, sizes, and designs to suit a variety of industrial applications.

Q2. What are the features of Corundum Mullite Ceramic Sagger?
A2. Corundum Mullite Ceramic Sagger has excellent thermal stability, high refractoriness, low thermal expansion, and high strength at high temperatures. It can withstand extreme heat, thermal shock, and corrosive environments. It has good insulation properties and is resistant to abrasion and wear.

Q3. What are the applications of Corundum Mullite Ceramic Sagger?
A3. Corundum Mullite Ceramic Sagger is widely used in the metallurgical, chemical, petrochemical, and ceramic industries. It is used as a crucible, saggar, boat, plate, resistor, and other furnace components. It is also used in the production of advanced ceramics, glass, metal powders, and other high-temperature materials.

Q4. How to choose the right Corundum Mullite Ceramic Sagger for my application?
A4. When choosing the right Corundum Mullite Ceramic Sagger for your application, you need to consider several factors such as the type of material you are processing, the temperature range, the atmosphere, the dimensional accuracy, the required strength, and the geometry of the part. You can consult our technical experts for advice on selecting the best sagger for your needs.

Q5. How to maintain and store Corundum Mullite Ceramic Sagger?
A5. Corundum Mullite Ceramic Sagger should be cleaned and inspected regularly to avoid contamination and damage. It should be stored in a dry and clean place, free from exposure to moisture, dust, and other impurities. It should be handled gently to avoid breakage or chipping. When not in use, it should be covered with a protective coating to prevent oxidation.




















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