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Chinese name: titanium carbonitride
English name: Titanium carbonitride
CAS: 12654-86-3
MDL: MFCD01868685
Molecular formula: TiCN
Molecular weight: 121.75
Melting point: 2900℃
Density: 5.08 g/mL at 25 °C(lit.)
Hardness (HV) : 34GPaI density 4.52
Properties: Gray or gray black powder, with hexagonal crystal structure, with low internal stress, high toughness, good lubricity, high hardness, wear resistance and other characteristics, suitable for occasions requiring lower friction coefficient and high hardness.
Application
1Ti(C, N) fund is a ceramic tool
Ti(C, N) foundation ceramics are a very important structural material, and the tools prepared with them are compared with WC-based cemented carbide.
The processing shows higher red hardness, similar strength, lower corrosion, thermal conductivity and friction coefficient, and has a better
High life or in the case of the same life can use a higher cutting speed, the workpiece to be machined has a better surface finish
Degree. It is understood that Japan's Ti(C, N) fund ceramic tool materials have accounted for more than 30% of all its tool materials market share.
2Ti(C, N) is a ceramic coating
Ti(C, N) foundation ceramics can be made into wear-resistant coatings and mold materials. Ti(C, N) coating has excellent mechanical properties
Tribological properties,
As a hard wear-resistant coating, it has been widely used in cutting tools, drills and molds, and has broad application prospects. Its control
The main preparation processes are plasma chemical vapor deposition, middle temperature chemical vapor deposition and traditional CVD method. Ti(C, N)
Compared with die steel, it has the advantages of no phase change, high temperature resistance, low friction coefficient and good adhesion resistance
With certain strength and toughness, it is a mold material with great potential for development.
3 Multiphase ceramic materials
Ti(C, N) can be combined with other ceramics to form composite materials, such as Ti(C, N)/Al2O3, Ti(C, N)/SiC,
Ti(C, N)/Si3N4,
Ti(C, N)/TiB2 and other multiphase ceramic materials, Ti(C, N) as the reinforcement can improve the strength and fracture toughness of the material.
It can also improve electrical conductivity.
4 Refractory materials
The addition of non-oxides to refractory materials will bring some excellent properties. Studies have shown that the presence of titanium carbonitride can be obvious
Improve the performance of refractory materials.
5 Synthesis of Ti(C, N) whisker
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