| Identification | Back Directory | [Name]
Titanium silicon carbide lump (Ti3SiC2) | [CAS]
12202-82-3 | [Synonyms]
Ti3SiC2 Titanium silicon carbide powder Titanium silicon carbide lump (Ti3SiC2) Titanium silicon carbide target (Ti3SiC2) Titanium silicon carbide powder (Ti3SiC2) Aluminum silicate potassium powder, flake Titanium silicon carbide powder (Ti3SiC4) Titanium silicon carbide powder (Ti3SiC5) Titanium silicon carbide powder (Ti3SiC6) Titanium silicon carbide powder (Ti3SiC3) Titanium silicon carbide lump (Ti3SiC2 SiC2) | [Molecular Formula]
CH8SiTi | [MOL File]
12202-82-3.mol | [Molecular Weight]
96.03 |
| Chemical Properties | Back Directory | [density ]
1.83 g/cm3 | [Appearance]
grey powder | [InChI]
InChI=1S/CH4.H4Si.Ti/h2*1H4; | [InChIKey]
IFVRSZWMNRWIPW-UHFFFAOYSA-N | [SMILES]
[SiH4].[Ti].C |
| Hazard Information | Back Directory | [Description]
Titanium silicon carbide lump (Ti3SiC2) is a composite ceramic material that combines high-temperature resistance, oxidation resistance and high strength with the electrical conductivity, thermal conductivity, machinability and ductility of metallic materials. More importantly, compared with traditional solid lubricants such as graphite and molybdenum disulphide, it exhibits a lower coefficient of friction and excellent self-lubricating properties. | [Application]
Titanium silicon carbide lumps (Ti3SiC2) can be used for the following applications: (1) Aerospace Industry: For components subjected to high temperatures and mechanical stresses, such as jet engine parts. (2) Nuclear Industry: Used in nuclear reactors for its radiation resistance and high-temperature stability. (3) Electronics and Energy Storage: In heat sinks, electrodes, and supercapacitors due to its thermal conductivity and electrical properties. (4) Mechanical Engineering: As wear-resistant coatings for cutting tools and mechanical components. (5) Automotive Industry: In engines and brake systems where heat resistance and lightweight materials are critical. |
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