High Density Graphite Block

High Density Graphite Block

High Density Graphite Block

High density graphite block is a kind of high-density graphite substrates refined from high-quality carbon raw materials through multiple impregnation and high-temperature graphiteification processes. It has unique high-density structure, excellent high-temperature strength, low permeability, and stable electrical and thermal properties. It is a type of high-strength, low-loss, and highly adaptable basic graphite raw material, which performs exceptionally well in high-temperature industrial equipment and precision processing fields. And it is highly suitable for industrial production demands such as ultra-high temperatures, strong abrasion, and high precision processing. You can use it in the processing of blanks for components such as electrical spark electrodes, semiconductor heat field blanks, and powder metallurgy sintering fixtures.  

Advantages of high density graphite block

It has a regular solid block-like form as their main shape with extremely outstanding overall comprehensive performance.

Excellent high-temperature thermal stability

It can withstand ultra-high temperature conditions for a long time under vacuum and inert atmospheres and its thermal deformation is minimal.

 

High density

It has very few internal pores and excellent resistance to penetration and erosion.

 

Stable chemical properties

It is not prone to react with molten materials, acid, or alkali media.

 

Fine and uniform material structure

It allows for high-precision turning and milling processing, which results in high surface finish and being less prone to powder shedding.

 

Dense and sturdy structure

Because it is resistant to wear, it has a significantly longer service life than ordinary graphite materials.

 

Uniform and stable thermal and electrical conductivity properties

Because of these, it has high thermal conductivity efficiency and uniform resistance distribution

 

Stable electrochemical properties

It enables it to be widely adapted for the production of electrical conductive and high-temperature heating industrial components.

 

Uses of high density graphite block

High-temperature equipment field

Heat field component processing

You can use it for manufacturing graphite heat fields, graphite furnace tubes, insulation cylinders, and high-temperature supports. With high density, high strength and high-temperature resistance, it can ensure the stability of the internal structure of the high-temperature furnace body. Then it effectively improves the quality of finished products in heat treatment and crystal growth processes.

 

Semiconductor and photovoltaic field

Precision component preparation

You can process it into key components such as single-crystal crucibles, flow diverters, and insulation components. It can meet the strict requirements for high-purity crystal preparation, which ensures the stability of semiconductor and الخلايا الكهروضوئية materials.

 

Precision processing field

Electrode production for electrical discharge machining

Because of its fine structure, good processing performance, and extremely low wear, it can process various complex and precise mold cavities. It has fast processing speed and high product accuracy, which significantly improves the efficiency and accuracy of mold processing.

 

Powder metallurgy field

High-temperature sintering molds

You can use it to process قوالب الجرافيت, refractory plates, and fixtures to ensure the precise size and intact appearance of sintered products. With the characteristics of not deforming, not sticking to materials, and not reacting at high temperatures, it improves the consistency of batch products.

 

مجال الطاقة الجديد

High-temperature assembly components

You can use it make various high-temperature assembly parts, trays, and support seats for lithium battery negative electrode graphitization and carbon fiber graphitization production lines. It is resistant to high temperatures, erosion, and not prone to powdering, adapted to large-scale high-temperature production processes.

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