Ceramic Titanium Diboride

وصف المنتج

  • الصيغة الجزيئية:
    B2Ti
  • نقاء:
    99%
  • CAS رقم.:
    12045-63-5
  • رقم اينكس:
    234-961-4
  • مرادف:
    TITANIUM BORIDE
  • الصور:
وصف

Ceramic Titanium Diboride (B2Ti) is a compound composed of titanium (Ti) and boron (B). Due to its unique physical and chemical properties, it has a wide range of applications and important roles in the field of ceramics.

Preparation of ceramic materials: It is one of the raw materials for preparing ceramics. Through high-temperature sintering process, titanium diboride powder particles will combine and densify with each other to form a dense ceramic material. This ceramic material has good mechanical properties and high-temperature stability. And is suitable for refractory materials, cutting tools and electronic equipment. In addition, it can also combin ith other materials such as TiC, TiN, SiC, etc. to form composite materials for making cutting tools and other high-performance ceramic components24.

Improve wear resistance and high temperature resistance: Ceramic Titanium Diboride has good wear resistance and high temperature resistance. And is often use for manufacture high-performance cutting tools such as drills, blades and knives. Coating can significantly improve wear resistance and extend the service life of the tool.

Thermal conductivity: Ceramic Titanium Diboride also has good thermal conductivity and can use for manufacture high-temperature thermal conductive materials. Such as heating elements, etc. This makes it an ideal choice for making high-temperature thermal conductive materials

Applications in electronic devices: In terms of electronic devices, Ceramic Titanium Diboride can use for make substrate materials and metallization layers in integrated circuits. Due to its high electrical conductivity, it can use for make high-frequency electronic devices.

Cathode coating material for aluminum electrolytic cells: Due to the good wettability of TiB₂ with aluminum liquid, using TiB₂ as the cathode coating material for aluminum electrolytic cells can reduce the power consumption of aluminum electrolytic cells and extend the life of the electrolytic cells.

In summary, Ceramic Grade Titanium Dioxide has many uses and important roles in the field of ceramics. From the preparation of composite ceramic products to the manufacture of high-temperature thermal conductive materials, ceramic cutting tools, refractory materials and electronic devices, it has demonstrated its excellent performance and broad application prospects.

With the advancement of technology, the application of titanium diboride in the field of ceramics will be further expanded. Promoting the development of related industries

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