High temperature titanium diboride
ОПИСАНИЕ ПРОДУКТА
Молекулярная формула:
B2TiЧистота:
99%Кас №:
12045-63-5Номер эйнека:
234-961-4Синоним:
TITANIUM BORIDEИзображений:
Описание
The uses and functions of titanium diboride in high-temperature thermal conductivity are mainly reflected in its application as a thermal conductive material and a heating material.
Titanium diboride (TiB2) is a material with a high melting point, high hardness, excellent wear resistance and corrosion resistance. It also has good thermal and electrical conductivity. These characteristics make titanium diboride have a wide range of application prospects in high-temperature thermal conductivity.
The following are the specific uses and functions of it in high-temperature thermal conductivity:
1. Making high-temperature thermal conductive materials: Since high temperature titanium diboride has good thermal conductivity. It can use for make high-temperature thermal conductive materials, such as heating elements. This material can maintain its structural stability at extreme temperatures and can quickly conduct and dissipate heat, thereby ensuring the stability and reliability of the device in a high-temperature environment.
2. Making PTC heating ceramic materials and flexible PTC materials: high temperature titanium diboride can be made into PTC heating ceramic materials and flexible PTC materials. These materials are safe, energy-saving, reliable, and easy to process and shape. It is a key high-tech for the replacement of household appliances such as electric irons, electric blankets, electric ovens, and air conditioners. They are a high-tech product that replaces various types of electric heating materials.
3. Titanium diboride has excellent electrical conductivity and excellent resistance to erosion by molten metal. It can be used to make evaporation vessels, molten metal crucibles, aluminum electrolytic cell cathodes, spark plugs and other electrodes and contact opening materials.
In summary, High temperature titanium diboride plays an important role in the field of high-temperature thermal conductive materials due to its excellent thermal conductivity and high-temperature stability. With the development of science and technology . And the growing demand for new materials, the application prospects of titanium diboride in this field will be broader.
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