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High Purity Titanium Nitride TiN Powder CAS 25583-20-4, 99.5%

Recently, the EU proclaimed new sanctions on Russia, including coal, timber, rubber, cement, and fertilizer, as well as high-end seafood TiN Powder.

 About Titanium Nitride TiN Powder: 
Titanium Nitride (TiN) is a very hard ceramic material, usually used as a coating for titanium alloys, steel, carbides and aluminum components to improve the surface properties of the substrate. The Vickers hardness of TiN is 1800-2100, the elastic modulus is 251 GPa, the coefficient of thermal expansion is 9.35×10-6 K-1, and the superconducting transition temperature is 5.6K.
 
TiN will oxidize at 800°C at normal temperature. TiN is brown and appears golden when it is coated. According to laboratory tests, it is chemically stable at a temperature of 20°C but will be slowly corroded by concentrated acid solutions at high temperatures. Depending on the material and surface finish of the substrate, the friction coefficient between TiN and another TiN is 0.4 to 0.9 TiN surface (unlubricated). The typical TiN formation has a NaCl-type crystal structure with a stoichiometric ratio of about 1:1. However, TiNx compounds with x in the range of 0.6 to 1.2 are thermodynamically stable.
 
TiN becomes superconducting at low temperatures, and for single crystals, the critical temperature is as high as 6.0K. The superconductivity in thin-film TiN has been extensively studied, and its superconductivity varies greatly depending on the sample preparation until the superconductivity in the superconductor-insulator transition is completely suppressed. Cooling the TiN film to an absolute value close to zero, converting it into the first known super insulator, suddenly increased the resistance by 100,000 times.
 
Titanium nitride is a hard ceramic material used as a coating on titanium alloys, steel, carbides and aluminum parts. Because of its golden surface, it can be used for jewelry and high-performance ceramic materials, as well as medical equipment such as scalpels and plastic bone, saw blades. In addition, it is also used as a conductive barrier in microelectronics and electrodes in bioelectronic applications. Feel free to send an inquiry to get the latest price if you would like to buy Titanium Nitride TiN Powder in bulk.


 How is Titanium Nitride TiN Powder produced? 
Titanium nitride can be made by directly reacting titanium and nitrogen at 1200°C. The coating can be formed by a vapor deposition method using a mixed gas of titanium tetrachloride, nitrogen, and hydrogen. Titanium dinitride is obtained by heating metallic titanium in nitrogen or ammonia at 900-1000°C. Titanium tetranitride is obtained by heating titanium tetrachloride in ammonia at 1000°C.

Product Performance of Titanium Nitride TiN powder:
Our Titanium Nitride, TiN powder (CAS 25583-20-4) has high purity, narrow size distribution, high temperature strength, high fracture strength, good chemical resistance, good thermal shock resistance, low density and high hardness.

Technical Parameter of Titanium Nitride TiN powder:

Product Name MF Purity Particle Size Specific Surface Area
( m2/g )
Volume Density
( g/cm3 )
Crystal Form Color
Titanium Nitride TiN 99% 1-3um, 5-10um 7.39  0.19 Spherical Gray-black

  
Chemical Composition of Titanium Nitride TiN powder:

TiN N O C Fe Al Ca Si Ni
99.5% 21.5% 0.6-1.2% 0.1% 0.015% 0.01% 0.01% 0.30% 0.3%


Application of Titanium Nitride TiN powder:
Titanium nitride is a hard ceramic material used as a coating on titanium alloys, steel, carbides and aluminum parts. Because of its golden surface, it can be used for jewelry and high-performance ceramic materials, as well as medical equipment such as scalpels and orthopedic bone saw blades. In addition, it is also used as a conductive barrier in microelectronics and electrodes in bioelectronic applications.
TiN is used as a thin coating to harden and protect cutting and sliding surfaces, for decorative purposes (due to its golden appearance), and as a non-toxic exterior for medical implants. In most applications, the applied coating thickness is less than 5 microns (0.00020 inches).
TiN is usually applied to steel, hardened steel and stainless steel materials that require high wear resistance and lubricity. TiN is an essential material for physical vapor deposition coatings and is very suitable for applications that use expensive tools (such as injection molding, sawing, tapping, and molding).
The coating is also used in many medical (implants, surgical instruments, etc.) and food processing applications. TiN can be easily peeled off and can be recoated. Can be stripped and recoated.
Make plastic packaging materials, such as PET bottles.
In the solar vacuum tube, the absorbed sunlight is very large.
The high-temperature furnace is used for energy consumption.
Making artificial limbs, biological materials.
Manufacturing optical equipment in harsh environments.
Used as alloy modifier in cemented carbide.


Packing & Shipping of Titanium Nitride TiN Powder :
We have many different kinds of packing which depends on the titanium nitride TiN powder quantity.
Titanium nitride TiN powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Titanium nitride TiN powder shipping: could be shipped out by sea , by air, by express as soon as possible once payment receipt.


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 boride powder, nitride powder, graphite powder, sulfide powder, 3D printing powder, etc.
If you are looking for high-quality TiN powder, please feel free to contact us and send an inquiry. ([email protected])

 

Titanium Nitride Properties

Other Names Tinite, TiNite, TiN powder, nitridotitanium
CAS No. 25583-20-4
Compound Formula TiN
Molecular Weight 61.87
Appearance Brown Powder
Melting Point N/A
Boiling Point N/A
Density 5.24 g/cm3
Solubility in H2O N/A
Exact Mass 61.951
   
   

Titanium Nitride Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
Transport Information N/A

Researchers at the University of Warwick in the UK have developed a lithium battery technology innovation. Adding graphene beams doubles battery life. By strengthening the structure of the anode with graphene beams, they have found an effective way to replace the graphite in the anode with silicon. Thereby increasing the capacity of the lithium-ion battery and more than doubling the lifespan.
As a supplier of anode materials for lithium batteries, we also provide TiN Powder. We will continue to provide TiN Powder for the global market, please feel free to contact us.


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