GRAPHITE BOX
High purity graphite boxes designed for high temperature processing and material handling in battery material production. Graphite boxes provide excellent thermal stability and chemical resistance for use in furnace environments.
GRAPHITE BOX
High purity graphite boxes designed for high temperature processing and material handling in battery material production. Graphite boxes provide excellent thermal stability and chemical resistance for use in furnace environments.
PRODUCT OVERVIEW
Graphite boxes are commonly used as saggers in high temperature furnace systems for processing battery materials and advanced ceramics. The graphite structure offers excellent resistance to thermal shock and maintains structural stability during repeated heating cycles.
These containers are used to hold materials during sintering or heat treatment processes. High purity graphite helps minimize contamination and supports consistent processing conditions in battery material production.
SPECIFICATIONS
Purity: 3N5
Form: Box / Sagger
Dimensions: Customized size available
Composition: Graphite
Application: Sagger for negative material of secondary battery
APPLICATIONS
Graphite boxes are used in high temperature furnace systems for processing battery materials, particularly during the production of negative electrode materials for lithium-ion batteries.
They serve as protective containers that hold materials during sintering or thermal treatment processes in battery manufacturing and advanced materials production.
CUSTOMIZATION OPTIONS
Graphite boxes can be manufactured in customized dimensions depending on furnace design and material processing requirements. Box size, wall thickness and structural design can be adapted to match different sintering or heat treatment systems.
Customization options allow compatibility with various battery material production processes and industrial furnace configurations.
TECHNICAL FEATURES
Graphite boxes offer excellent resistance to high temperatures and thermal shock, allowing stable operation during repeated heating cycles. The material maintains structural integrity and dimensional stability in demanding furnace environments.
High purity graphite reduces contamination risk and supports consistent material processing in battery manufacturing applications.
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