Graphite Blocks

Graphite Blocks

Product

Alumina Ceramics

Alumina Ceramic Tube

Alumina Ceramic Rod

Alumina Ceramic Substrates

Alumina Ceramic Disc

Alumina Ceramic Plate

Alumina Ceramic Roller

Alumina Ceramic Crucible

Alumina Ceramic Ring

Alumina Ceramic Part

Zirconia Ceramics

Zirconia Ceramic Tube

Zirconia Ceramic Rod

Zirconia Ceramic Plate

Zirconia Ceramic Disc

Zirconia Ceramic Crucible

Zirconia Ceramic Ring

Zirconia Part

Zirconia Knife

Silicon Carbide Ceramics

RBSiC

SSiC

R-SiC

Aluminum Nitride Ceramics

Aluminum Nitride Substrates

Aluminum Nitride Tube

Aluminum Nitride Plate

Aluminum Nitride Disc

Aluminum Nitride Part

Boron Carbide Ceramics

Boron Carbide Tiles

Boron Carbide Plate

Boron Carbide Insert

Boron Carbide Bushing

Boron Carbide Tube

Boron Carbide Nozzle

Boron Carbide Ball

Boron Nitride Ceramics (BN)

Boron Nitride Tube

Boron Nitride Plate

Boron Nitride Ring

Boron Nitride Nozzle

Boron Nitride Crucible

Boron Nitride Part

Pyrolytic Boron Nitride (PBN)

PBN Crucible

PBN Plate

PBN Tube

PBN Ring

PBN Part

Silicon Nitride (Si3N4) Ceramics

Silicon Nitride Substrates

Silicon Nitride Bearing

Silicon Nitride Igniter

Silicon Nitride Balls

Silicon Nitride Tube

Silicon Nitride Part

Beryllium Oxide Ceramics

BeO Tube

BeO Substrates

BeO Ring

Mullite Ceramics

Mullite Ceramic Part

Mullite Ceramic Tube

Mullite Ceramic Plate

GaN Ceramics

GaN Substrates

GaN wafer

Graphite

Graphite Crucible

Graphite Rotors and Shaft

Graphite Plate

Graphite Rod

Graphite Tube

Graphite Ring

Graphite Heater

Graphite Launder

Graphite Cylinde

Graphite Nozzle

Graphite Blocks

Quartz

Quartz Tube

Quartz Rod

Quartz Plate

Quartz Crucible

Quartz Ring

Tugnsten Carbide

Tungsten Carbide Rod

Tungsten Carbide Strips/Plate

Tungsten Carbide Burrs

Tungsten Carbide Dies

Tungsten Carbide Balls

Graphite Blocks

Graphite blocks are solid, rectangular-shaped structures made from graphite material. They are known for their excellent thermal conductivity, high-temperature resistance, and chemical inertness. 

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Product Description

Features & Benefits

  • High thermal conductivity: Graphite blocks have exceptional thermal conductivity, allowing for efficient heat transfer and dissipation.
  • High-temperature resistance: Graphite blocks can withstand extremely high temperatures, making them suitable for applications in high-temperature environments.
  • Chemical inertness: Graphite is highly resistant to chemical corrosion and can withstand exposure to various chemicals and aggressive environments.
  • Low coefficient of thermal expansion: Graphite blocks have a low coefficient of thermal expansion, ensuring dimensional stability even under temperature variations.
  • Self-lubricating properties: Graphite has natural lubricating properties, reducing friction and wear in applications where sliding or rubbing contact is involved.
  • Heat management: Graphite blocks excel in thermal management applications, including heat sinks, furnace linings, and thermal insulation components.
  • Resistance to thermal shock: Graphite blocks have good resistance to thermal shock, making them suitable for applications involving rapid temperature changes.
  • Chemical resistance: They are highly resistant to many chemicals, making graphite blocks ideal for use in corrosive environments.
  • Dimensional stability: Graphite blocks maintain their shape and dimensions under high temperatures and mechanical stress, ensuring consistent performance over time.
  • Machinability: Graphite blocks can be easily machined and shaped into various sizes and configurations to meet specific application requirements.

Markets & Applications

  • Metallurgical industry: Graphite blocks are used in steelmaking, foundries, and metal casting processes as crucibles, molds, and furnace linings.
  • Semiconductor industry: They are used in semiconductor manufacturing for applications such as thermal management in diffusion furnaces and sputtering targets.
  • Chemical industry: Graphite blocks find applications in chemical reactors, heat exchangers, and corrosive environments where resistance to chemicals is essential.
  • Energy industry: They are used in high-temperature applications such as thermal insulation in furnaces, electrodes in fuel cells, and components in nuclear reactors.
  • Aerospace industry: Graphite blocks are used in aerospace applications, including thermal protection systems, rocket nozzles, and high-temperature composites.