Titanium Carbide (chemical formula TiC) has a molecular matter of 59.89. A grey powder that is often used in the manufacture of cemented carbide, can also serve as an electrode, abrasive, and arc lamp.
The following is information on Titanium Carbide Powder
A chemical formula of titanium carbide is TIC. The molecular weight for this substance is 59.89. Grey metal-like, face-centered cubic lattice solid. Titanium cation melting at 314090°C. Titanium cation boiling points are 4820°C. The relative density is 4.93. The hardness exceeds 9. This compound is not soluble or soluble with water. The TiC compound, which is less than 800 is air-stable. If it exceeds 2000, it reacts with air.
TITANIUM CARBOID TiC is an extremely hard (Mohs 9–9.5), refractory clay material that looks similar to tungsten cadmium. It is a hard, blackish powder that has a sodium-centered cubic crystal structure. A titanium carbide elastic modulus (about 400 GPa) and a shear module of 188 GPa has been measured.
Titanium carbide (TiV. Fe. C.) is an extremely rare mineral found in nature. Crystals of this mineral range in size from 0.1 to 0.3%.
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Titanium Carbide TiC-Powder Properties :
The molecular weigh of the chemical formula TiC is 59.009. Gray metallic lustrous and crystalline solid. The melting and boiling points of the solid are 3140, 4820, respectively. Hardness 9-10. Insoluble in water. Soluble in nitric oxide and aqua regia. It is stable to oxygen when lower than 800 and can react with pure Oxygen at 1150. Cemented carbide can be made from it. Also, used in arc lamps as an electrode and abrasive.
Technical Parameter of TitaniumCarbide TiC Powder:
Titanium Carbide TIC Powder production?
There are many ways you can synthesize titanium carbonide. These are the most prevalent:
1. Carbothermic reduction
Use carbon black to reduce TiO2, the reaction temperature range is 1700-2100, and the chemical reaction formula is TiO2(s)+3C(s)=TiC(S)+2CO(g).
2. Direct carbonization
TiC is produced when Ti powder, carbon powder and Ti(s)+C(s) react. It’s a chemical reaction of the form Ti(s);+C(s);=TiC. The use of this method is restricted because it is extremely difficult to create sub-micron metallic Ti powder. You will need to wait between 5 and 20 hours for this reaction to take place. Also, the process can be difficult to regulate. It is important to grind the reactants further in order to obtain fine particles. Granular TiC powder. It is essential to chemically clean the powder obtained from ball milling in order to achieve a purer product.
3. Chemical vapor deposition
The reaction between TiCl4, TiH2 and Cl is used to synthesize TiCl4. TiCl crystals can grow on monofilament directly. This method limits the production of TiC and can sometimes affect its quality. You should also be aware that the product and TiCl4 are strongly corrosive.
4. Sol-gel method
By thoroughly mixing and dispersing material with the aid of a solution, this method can be used to produce small size products. While it offers the benefits of high chemical uniformity as well small particle size and narrow distribution, low heat treatment temperatures, and low temperature is required, the process for synthesis is lengthy and complex, with large drying shrinkage.
5. Method by Microwave
As raw materials for nano TiO2 + carbon black, we can apply the principle carbothermal reduction reaction to heat the material with microwave energy. 15giorni -TiO2 (carbon) and TiC are made by using microwave energy converted into heat energy.
6. Blast impact method
In order to make the precursor for the titan dioxide powder, carbon powder and titanium dioxide are combined in a proportion. To conduct the experiment, put it in an unmade explosion container and then collect the detonation shockwave. Following a preliminary sieving process, any large impurities or iron filings have been removed and a black powder has been obtained. After being soaked for 24 hours in aqua regia and then finally being put into a muffle furnace, where it is calcined at 405°C for about 400 minutes, the black powder will turn brown.
7. Induction high frequency carbothermic reduction
You will need to weigh and combine the pigment-grade carbon dioxide powder and charcoal powder. To form a block, press the tablet pressing button. Following heat preservation, the reduced product can be naturally cooled to room temperatures under an argon environment. Once it has cooled, remove the block and then grind or crush the ultra-fine, titanium carbide.
Titanium Carbide TIC Application:
Cemented carbide can be made from titanium carbide.
1. For high-temperature, thermal spraying material, weld materials, hard film materials for military aviation and other hard alloys or cermets.
2. Thermistor production is enhanced by the use of titanium carbide as an additive.
3. Titanium carbide powder is a NaCl-type cube crystal structure. 6% to 30% TiC has been added to the WC-Cocemented carbide to form a TiC-WC concrete solution with WC. This improves the alloy’s resistance to red heat as well as its wear resistance.
4. Titanium carbonide, which has anti-oxidation & anti-corrosion qualities, is better suited for steel processing than WC-Co-cemented carbide.
5. Titium carbide may be made tungstenless by adding alloys, such as NiMo, to the binder.
6. It is commonly used to make cermets out of titanium carbide. This can be used for steel processing, with fast cutting speeds.
7. A wear-resistant finish on metallic parts like watch mechanisms and knives is provided by titanium carbide.
8. Silicon carbide coating : The TiC can also be used to thermally insulate spacecraft’s atmosphere.
Titanium Carbide TiC powder Storage Conditions :
Titanium Carbide TiC Powder ought to be tightly sealed and kept out of direct sunlight. Also, avoid stress.
Shipping & Packaging of Antimony Selenide sb2Se3 Puffer :
Titanium Carbide TIC Powder Packing: Vacuum Packaging, 1kg/bag and 25kg/barrel.
Shipping: Titanium Carbide TiC-Powder after payment receipt.
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