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The properties and benefits of graphite
This material is carbonized and it has a number of advantages, such as its high temperature resistance and corrosion resistance.
Uses of graphite
It is widely applied in the fields such as metallurgy. Chemical industry, machinery, electronic, aerospace, national defence and military industry. Graphite has many uses, including refractory, brake linings. carbon brushes, batteries. expanded graphite.
Graphite has many important applications.
In the smelting sector, graphite can be used for making graphite crucibles as well as as a protective agent for steel ingots. It is also used as magnesia carbon bricks to line smelting kilns.
2. Conductive Materials
In the electrical sector, graphite can be used for electrodes as well as brushes, electric poles, carbon nanotubes or coatings of television picture tubes.
3. Wear-resistant and lubricating materials
In many mechanical devices, graphite, a material that is both wear-resistant, and lubricating, can be used. The graphite, when heated to temperatures of between -200 and 2000, can move at speeds of up to 100 m/s. This makes the equipment ineffective or require less lubricating fluid.
4. Sealing materials
You can use flexible graphite for centrifugal and steam turbine pumps, piston rings, seals or gaskets to transport corrosive media.
5. Corrosion resistant materials
Graphite is used to make equipment, pipes, and utensils that are resistant against corrosion. This material is widely used for equipment in petroleum, chemical industries, and hydrometallurgy.
6. Heat insulation, radiation protection and high-temperature resistant material
Graphite has many uses, including as a neutron modulator for nuclear reactors and missile nose cones. It can also be used to make thermal insulation materials or radiation materials.
Graphite application products with high value added
The continuous innovation in science, technology and graphite is creating high-value products. For example, expanded and isotropic carbon graphite as well as fluorinated graphite or spherical lithium-ion graphite have been used widely in the fields of energy conservation and environment protection, new technologies, information technology, vehicles with new energy sources, high-end manufacturing equipment, and emerging industries like biology. In general, graphite plays a key role in almost all major development directions.
Graphite is a term used to describe the different types of graphene and their applications.
The current research on
It has also made a significant breakthrough. The mass production of graphite derivatives and composites such as fluorinated and silicon-impregnated products, high-purity and nuclear graphite and fluorinated and nuclear graphite has taken place both at home as well as abroad.
Physicists can use graphene for clean, endless power generation circuits
A team of University of Arkansas physicists has developed a circuit capable of capturing the thermal motion of the graphene material and converting it into an electricity current. The graphene circuit-based energy harvesting will be integrated in the chip, providing a clean and unlimited low voltage power supply for small sensors or devices.
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