Customization: | Available |
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Density: | 1.70-1.90g/cm3 |
Diameter: | Customized |
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• High mechanical strength
• Oxidation resistance
• Chemical resistance
• Good sliding properties
• High thermal stability
• High thermal shock resistance
• Low wettability
• High corrosion resistance
• High thermal conductivity
• Good electrical conductivity
Physical and chemical index
Item | Unit | Grade | |||||
Max Grain Size | mm | 0.8 | 0.8 | 2 | 2 | 4 | 4 |
Bulk Density | g/cm³ | ≥1.70 | ≥1.73 | ≥1.58 | ≥1.70 | ≥1.57 | ≥1.69 |
Specific Resistance | µΩ.m | ≤8.5 | ≤8.0 | ≤11.5 | ≤8.5 | ≤11.5 | ≤8.5 |
Flexural strength | Mpa | ≥10.0 | ≥12.0 | ≥6.0 | ≥9.0 | ≥6.5 | ≥9.5 |
Compressive Strength | Mpa | ≥24.0 | ≥31.0 | ≥18.0 | ≥30.0 | ≥17.5 | ≥29.0 |
Thermal Conductivity | W/(m.K) | ≥120 | ≥130 | ||||
C.T.E(100-600)ºC | 10-6/°C | ≤2.5 | ≤2.5 | ≤2.5 | ≤2.5 | ≤2.5 | ≤2.5 |
Ash Content | % | ≤0.3 | ≤0.3 | ≤0.3 | ≤0.3 | ≤0.3 | ≤0.3 |
( **Note: above are just the several we can provide, more specifications and models, welcome your specific inquiry)
1. Machining of Graphite Parts (For example : graphite crucible, graphite sagger, graphite lubricants cylindrical, etc...)
2. Laboratory pyrolysis stirring
3. Graphite rods are often utilized for fiber optics and semiconductor applications, both of which need precision and sensitivity. More popular uses of graphite rods are fishing rods and small fishing rods (since graphite is sensitive, durable, and lightweight).
4. Industrial applications include heat treating; they are used to support beams or hearth rails to enable thermal expansion because graphite can withstand extreme temperatures. Also as hot and melting metal stirring rods, graphite electrode cylinder rods. In electrolysis, graphite rods are used as well as the numerous delocalized electrons allow electricity to move through graphite swiftly.
5. Graphite rods can be used to extend a blown-in hole in a tube, as a flaring device, or to make an indentation in a glass sidewall. Graphite rods are applied as moderators in nuclear reactors to control the reaction rate. Graphite enables fission chain reaction by slowing neutrons in a graphite reactor. A few rods are inserted and absorb more neutrons that become available then the chain reaction accelerates. The level of power in the reactor starts to rise.
6. Machined graphite is commonly made of a composite or mixture of graphite and copper. Pure graphite with the additional copper yields its sought-after properties of elevated strength and secured conductivity. As was alluded to, graphite rods are extremely resistant to heat. To define and quantify "extreme," it is to be noted that graphite rods can keep their form even when exposed to "extreme" temperatures such as 5000 degrees.
Why choose us?
Welcome your inquiry to Xingshi Graphite and Carbon !!!