What is Titanium Nitride used for?
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Australian alumina ban disrupts Rusal Titanium Nitride powder prices for chemicals. Patel said. "One possible outcome could be Chinese buyers buying alumina and reselling it through eastern Russian ports." Rusal has a 20% stake in the Queensland Alumina Refinery, which has a capacity of 3.95 million tonnes a year, thus providing Rusal with 790,000 tonnes a year, Patel said. In addition, Rusal's Nikolaev refinery in Ukraine, which has an annual capacity of 1.75 million tonnes, has been suspended due to the conflict, he added. WoodMac said Rusal was also experiencing supply chain problems at its 2 million tonne a year Aughinish refinery in Ireland.
Introduction to Titanium Nitride TiN Powder
Titanium nitride or TiN is a golden cubic crystal. The molecular weight is 61.89. The melting point is 2950℃. The density is 5.43g/cm3.
Physicochemical Properties of Titanium Nitride TiN Powder
Titanium nitride is slightly soluble in hydrofluoric acid, aqua regia, and nitric acid, but insoluble in water. It has a high melting point and properties of high strength, high hardness, acid, alkali corrosion resistance, wear resistance, high-temperature chemical stability, and excellent electrical and thermal conductivity.
HSS cutting tools covered with titanium nitride film can reduce tool wear, increase chip speed, and extend service life. Titanium nitride is also widely used as watchcase, watchband, and other imitation gold alloy coatings. Titanium nitride whiskers are used to strengthen the metal and ceramic matrix composites. It is prepared by reaction of titanium and nitrogen at 1200℃.
|Titanium Nitride TiN Powder Properties
|Tinite, TiNite, TiN powder, nitridotitanium
|golden brown powder
|Solubility in H2O
Titanium Nitride TiN Powder CAS 25583-20-4
Applications of Titanium Nitride Ceramic Materials
Titanium nitride is a new kind of multifunctional cermet material, which has excellent properties such as high melting point, high hardness, wear resistance, good chemical stability, good electrical and thermal conductivity, and light properties. Its melting point is 2930~2950℃, is a good conductor of heat and electricity, and has superconductivity at low temperatures. It is used to manufacture jet engines. Because of its unique golden metallic luster, titanium nitride is also used in the field of gold decoration.
1. Used for tool manufacturing
Titanium nitride ceramic coating has a golden yellow finish that looks nice on the cutting tool. However, its main function is not for decoration, it has a Vickers hardness (HV) of more than 2500, and the thickness of the coating on the tool is usually 3 to 5 microns. Higher wear resistance and heat resistance and longer service life than uncoated tools. Applying this technology to machinery in industrial production, such as coating the gear hob with titanium nitride, can extend the service life by 3 to 4 times, while cutting the gear can increase the cutting speed or feed or more, thus reducing the machining time of the material.
2. Used in biomedicine
The occluder used for the treatment of atrial septal defect, ventricular septal defect, and patent ductus arteriosus in congenital heart disease has been widely used in clinical medicine as an interventional implant. But the ordinary heart stoppers are mainly made from the nickel-titanium alloy material, nickel is as high as 55%. Excessive nickel can cause allergies to the human body, poisoning, and even cause cancer for long-term effects. And the Nitinol surface purification film of the common Nitinol occluders will be destroyed, releasing nickel ions in the complex human body environment.
Because titanium nitride is a biocompatible material (previously used in coronary stents), it is much less thrombogenic than nitride itself.
3. Used for the car front baffle film
Based on nano titanium nitride, the nano-ceramic film produced by magnetron sputtering technology and metal nitride technology is not easy to be corroded, is durable, does not shield mobile phone signals, good heat dissipation.
The difference between nano-ceramic insulation film and metal insulation film is as follows:
1. Different sunscreen and heat insulation effect
Metal film heat dissipation is worse than ceramic film, heat insulation effect is general, high reflective rate. Ceramic film through solar spectrum selective filtering function to achieve the purpose of heat insulation, heat insulation is far more than metal, lower reflective rate, excellent stability.
2. Different signal passing rates
Metal film and a key difference between ceramic membrane, cut off the signal rate, metal film have disruptive to import GPS, the ETC (no stop electronic toll collection system) is also, easy to affect all kinds of signals through the metal film is generally divided into single metal film and multilayer metal film, although multilayer metal film on the thermal insulation is better than that of the single-layer metal film. But because of its thickness, the signal is even more seriously blocked. The ceramic film, stripped of its metallic properties, does not shield the signal.
3. Different oxidation shelf life
The metal film is easy to oxidize, and the shelf life is slightly short, while the chemical properties of the ceramic film are more stable, not easy to oxidize, and can resist acid and alkali, and organic solvents, so as to have a long service life. The shelf life of general ceramic heat insulation film is 10 years, while the metal heat insulation film is generally 5 years.
Main Supplier of Titanium Nitride TiN Powder
Luoyang Tongrun Nano Technology Co. Ltd. (TRUNNANO) is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality chemicals and Nanomaterials, including silicon powder, nitride powder, graphite powder, zinc sulfide, calcium nitride, 3D printing powder, etc.
If you are looking for high-quality titanium nitride TiN powder, please feel free to contact us and send an inquiry. ([email protected])
The negative electrode material is the carrier of lithium ions and electrons during the charging process of the battery and plays the role of energy storage and release. In the battery cost, the negative electrode material accounts for about 5%-15%, which is one of the important raw materials for lithium-ion batteries. The global sales of lithium battery anode materials are about 100,000 tons, mainly in China and Japan. According to the current growth trend of new energy vehicles, the demand for anode materials will also show a state of continuous growth. At present, the global lithium battery anode materials are still dominated by natural/artificial graphite, and new anode materials such as mesh carbon microspheres (MCMB), lithium titanate, silicon-based anodes, HC/SC, and metal lithium are also growing rapidly.
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