Titanium carbide explained

Titanium carbide, TiC, is an extremely hard (Mohs 9–9.5) refractory ceramic material, similar to tungsten carbide. It has the appearance of black powder with the sodium chloride (face-centered cubic) crystal structure.

It occurs in nature as a form of the very rare mineral khamrabaevite - (Ti,V,Fe)C. It was discovered in 1984 on Mount Arashan in the Chatkal District,[1] USSR (modern Kyrgyzstan), near the Uzbek border. The mineral was named after Ibragim Khamrabaevich Khamrabaev, director of Geology and Geophysics of Tashkent, Uzbekistan. Its crystals as found in nature range in size from 0.1 to 0.3 mm.

Physical properties

Titanium carbide has an elastic modulus of approximately 400 GPa and a shear modulus of 188 GPa.[2]

Manufacturing and machining

Tool bits without tungsten content can be made of titanium carbide in nickel-cobalt matrix cermet, enhancing the cutting speed, precision, and smoothness of the workpiece.

The resistance to wear, corrosion, and oxidation of a tungsten carbidecobalt material can be increased by adding 6–30% of titanium carbide to tungsten carbide. This forms a solid solution that is more brittle and susceptible to breakage.

Titanium carbide can be etched with reactive-ion etching.

Applications

Titanium carbide is used in preparation of cermets, which are frequently used to machine steel materials at high cutting speed. It is also used as an abrasion-resistant surface coating on metal parts, such as tool bits and watch mechanisms.[3] Titanium carbide is also used as a heat shield coating for atmospheric reentry of spacecraft.[4]

7075 aluminium alloy (AA7075) is almost as strong as steel, but weighs one third as much. Using thin AA7075 rods with TiC nanoparticles allows larger alloys pieces to be welded without phase-segregation induced cracks.[5]

See also

Notes and References

  1. Dunn . Pete J . 1985 . New mineral names . American Mineralogist . 70 . 1329–1335.
  2. Low-Temperature Elastic Properties of ZrC and TiC . Chang . R . Graham . L . 1966 . Journal of Applied Physics . 37. 10 . 3778–3783 . 10.1063/1.1707923. 1966JAP....37.3778C .
  3. 10.1016/j.surfcoat.2018.11.060. Decorative black coatings on titanium surfaces based on hard bi-layered carbon coatings synthesized by carbon implantation. Surface and Coatings Technology. 358. 386–393. 2019. Gupta. P.. Fang. F.. Rubanov. S.. Loho. T.. Koo. A.. Swift. N.. Fiedler. H.. Leveneur. J.. Murmu. P.P.. Markwitz. A.. Kennedy. J.. 139179067. 2292/46133. free.
  4. Book: Manned Spacecraft Design Principles. Sforza. Pasquale M.. 13 November 2015. Elsevier. 406. en. 4 January 2017. 9780124199767.
  5. Web site: New welding process opens up uses for formerly un-weldable lightweight alloy. newatlas.com. 13 February 2019. en. 2019-02-18.