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Graphite Components

Graphite Components

Graphite Components

Graphite components are various types of graphite parts assembled through precise machining using high-purity graphite raw materials. They have stable structural strength, which are suitable for various high-temperature, vacuum, and corrosive environments. And they can meet the demanding usage requirements of heavy industry, semiconductors, and new energy industries. You can use them in graphite heat fields for single crystal furnaces, graphite electrodes for electrical discharge machining and etc.

Advantages of graphite components

You can process them into various irregular shapes such as tubes, rods, crucibles, heat insulation covers, molds, conductive bases, etc.

Strong high-temperature thermal stability

They can work stably for a long time at temperatures ranging from room temperature to 2800°C in a vacuum environment.

 

Uniform and controllable heat conduction

They allow for both rapid heat conduction and dissipation, as well as the fabrication of heat insulation barriers to block heat radiation.

 

Strong chemical inertness

They are resistant to strong acids, strong bases, and erosion by molten metals.

 

Low friction coefficient

They can operate for a long time without the need for additional lubrication.

 

Easy to carburize, drill, and cut

You can customize them with complex irregular dimensions.

 

Excellent thermal shock resistance

They are resistant to cracking under sudden cooling and heating.

 

Stable and uniform conductive performance

They are suitable for various conductive and discharge applications.

 

Excellent heat conductivity

They can quickly balance the temperature of the cavity, which makes it a core material for heat treatment and temperature control in thermal equipment.

 

Uses of graphite components

Semiconductor Photovoltaics Field

As single crystal and polycrystal furnace insulation covers, crucibles and heating components

Because of the high purity and extremely low impurity content, they will not release impurities to contaminate the silicon raw materials under high-temperature conditions. And they have uniform heat and conductive properties, with balanced temperature distribution during the sintering process. This effectively reduces the color difference and cracking problems of photovoltaic wafers, which significantly improves the yield rate of photovoltaic cells.

 

New Energy Energy Sector

Lithium battery sintering tooling

You can use it in lithium battery production are the core components for sintering graphite to ensure the stability of the battery’s electrochemical performance. With high current conduction efficiency, they reduce internal faults in the fuel cell stack, effectively extending the overall service life of the fuel cell.

 

High-temperature metallurgical heat treatment industry

Melting crucible, heat insulation components

Because of excellent heat resistance, they can withstand the erosion of molten metals, which are not prone to cracking or wear. An they can evenly distribute the internal temperature of the furnace chamber, reduce heat loss, and reduce production energy consumption. And they have strong thermal shock stability, which can operate stably for a long time under vacuum and high-temperature alternating conditions.

 

Machining Industry

Wear-resistant self-lubricating components

You can use them as graphite bushings, wear-resistant sliders, and guiding pads are typical self-lubricating graphite accessories. With extremely low friction coefficients, they are suitable for high-temperature oil-free mechanical conditions. And because they are easy to process into fine and complex patterns and cavities, they can efficiently complete the electrical discharge machining.

 

Chemical Electrolysis Industry

Electrolytic cell graphite electrodes, anti-corrosion bushing components

With stable electrical conductivity, they reduce the frequency of replacement of electrolytic production consumables. And they prevent the metal vessel from being corroded and perforated, which significantly extend the service life.

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