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MAX Phase

MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder

Item No.: Tr-Ti2SnC
Ti2SnC has high fracture toughness, high elastic modulus, high strength and high thermal shock resistance.
Purity: 99%
Particle Size: 325 mesh
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Description
Titanium Tin Carbide Powder Properties
About MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder:
Ti2SnC ceramics is a new type of structural ceramics that can be machined and has a special layered structure.
It combines the best properties of both metals and ceramics: like metals, it conducts electricity well.
Thermal conductivity, mechanical processing, high damage tolerance and thermal shock resistance; Similar to ceramics,
It has a high elastic modulus, high-temperature resistance, oxidation resistance and corrosion resistance. TRUNNANO is a trusted global MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder supplier. Feel free to send an inquiry about the latest price of Titanium Tin Carbide at any time.

Product Performance of Titanium Tin Carbide Ti2SnC Powder :
Titanium tin carbide Ti2SnC powder has high strength and elastic modulus, high thermal conductivity and electrical conductivity, and good workability.

Technical Parameter of Titanium Tin Carbide Ti2SnC Powder :
Product Name MF Purity Particle Size Molecular Weight Melting Point Color
Titanium Tin Carbide Ti2SnC 99% 325 mesh 196 2000℃ Gray Black
 
How is MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder Produced?
Ti3SnC2 ceramics containing FeSnY, Sn and TiC were obtained by using Fe as sintering aid and hot pressing sintering element mixture at 1150 °C and 50 MPa for 10h.Ti2SnC ceramics containing Sn and TiC impurities were obtained by sintering Ti, Sn and graphite in a tube furnace with argon atmosphere at 1600 °C for 4 h.
 
Applications of MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder :
Based on the above advantages, Ti2SnC ceramics may be widely used as a matrix or reinforcement.
Used in aviation, aerospace, weapons and equipment, nuclear industry and electronic information and other high-tech fields.
Although Ti2SnC ceramics have excellent comprehensive properties and a wide range of application prospects, the material.
The preparation is difficult and the purity is difficult to control, so the application of Ti3SnC2 ceramics is limited.

Ti2SnC has applications in many fields, among which the most representative are high-temperature structures and functional materials. As a high-temperature structural material, Ti2SnC can be used to manufacture high-temperature furnaces, high-temperature molds, and high-temperature bearings.

Due to its high melting point and chemical stability, Ti2SnC can be used for processing and refining difficult materials such as titanium alloys and high-strength steel. In addition, Ti2SnC can also be used as functional materials, such as thermal resistance materials, resistor materials, etc.
The application of Ti2SnC as a high-temperature structural material is closely related to its excellent performance. Firstly, Ti2SnC has a high melting point and can maintain stability at high temperatures while exhibiting good corrosion resistance. Secondly, Ti2SnC has high strength, hardness, good wear, and high-temperature creep resistance. In addition, Ti2SnC also has good antioxidant performance and low coefficient of thermal expansion, making it suitable for high-temperature environments.

A successful case of Ti2SnC application is manufacturing high-temperature bearings in aviation engines. Traditional bearing materials are prone to problems such as fatigue and corrosion in high-temperature environments, and the excellent performance of Ti2SnC can effectively solve these problems. Its high melting point and strength enable it to withstand heavy loads and high speeds in high-temperature environments while exhibiting good corrosion and oxidation resistance. In addition, the lower thermal expansion coefficient of Ti2SnC can also effectively reduce friction and wear during bearing operation. Therefore, aviation engine high-temperature bearings manufactured using Ti2SnC have a longer service life and lower maintenance costs, making important contributions to the development of the aviation industry.

 

Storage Condition of Titanium Tin Carbide Ti2SnC Powder :
The damp reunion will affect Ti2SnC powder dispersion performance and using effects, therefore, titanium tin carbide Ti2SnC powder should be sealed in vacuum packing and stored in cool and dry room, the titanium tin carbide can not be exposure to air. In addition, the Ti2SnC powder should be avoided under stress.

Packing & Shipping of Titanium Tin Carbide Ti2SnC Powder :
We have many different kinds of packing which depend on the titanium tin carbide Ti2SnC powder quantity.
Titanium tin carbide Ti2SnC powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Titanium tin carbide Ti2SnC powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

Titanium Tin Carbide Powder Properties

Other Names TiSnC, Ti/Sn/TiC, Ti2SnC powder
CAS No. N/A
Compound Formula Ti2SnC
Molecular Weight 226.45
Appearance Dark Gray to Black Powder
Melting Point N/A
Boiling Point N/A
Density 6.24 g/cm3
Solubility in H2O N/A
Thermal Expansion N/A
   
   

Titanium Tin Carbide Powder 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
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