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Titanium Boride Powder

Titanium Boride Powder

400 INR/Gram

Product Details:

  • Molecular Weight 69.49 g/mol
  • Melting Point 2980C
  • Boiling point N/A (Decomposes before boiling)
  • Form Fine powder
  • Structural Formula TiB2
  • HS Code 28211000
  • Ph Level Neutral
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Titanium Boride Powder Price And Quantity

  • 400 INR/Gram
  • 1 Gram

Titanium Boride Powder Product Specifications

  • 28211000
  • Titanium Boride
  • TiB2
  • TiB2
  • 234-961-4
  • Conductive ceramic material, cathode coating material for electrolytic aluminum cell, composite ceramic material, PTC heating ceramic material
  • Neutral
  • GB/T 25759-2010
  • 69.49 g/mol
  • Fine powder
  • Industrial Grade
  • Industrial, research, and electronic applications
  • Titanium Diboride (TiB2)
  • N/A (Decomposes before boiling)
  • 2980C
  • 99%
  • Powder
  • Insoluble in water, soluble in acids
  • Odorless
  • Odorless and tasteless
  • 4.52 Gram per cubic centimeter(g/cm3)
  • Yes
  • Inorganic Compound
  • 12045-63-5
  • Titanium Diboride, TiB2 Powder
  • Keep tightly sealed in a cool and dry place
  • Powder

Product Description

Product Name: Titanium Boride Micro Powder

Product Name

Titanium Boride Micro Powder

Catalog No.

NCZ-NSC307/20

CAS No.

12045-63-5

Purity

99.9%

APS

3Am, 500Am (Customizable)

Molecular Formula

TiB2

Appearance

Powder

Color

Gray Powder

Density

4.52 g/mL

Melting Point

2980 AC

TitaniumBoride Micro Powder Description:

TitaniumBoride Micro is electrical conductivity composite materials--Electricalconduction boron nitride named evaporation boat made by titanium diboride andboron nitride is the primary member for vacuum aluminizing equipment; Ceramiccutting tools and their components--Titanium diboride ceramic is used for metalwortles, extrusion dies, sandblasting nozzles, potted components and cuttingtools; Composite ceramic materials--It could be used as multi-element compositematerialsa important constituent element.

Itcan be made up of cutting toolsa composite materials with TIC, TIN, or SIC. Andit is as a component to make armor protection materials.

Itis the best materials for thermostability components and function devices;Aluminium electrolysisa cathode materials--Because of the good wet ability ofTIB2 and metal aluminum liquid.

Itmakes the electrolytic aluminumas power consumption low, then the electrolyticbath's life will belong.

Itmay also make up PIC exothermic materials and flexibility PIC materials, and itis the intensify reagent of the metal materials such as Al, Fe, and Cu.Products Performance:

Itis a new ceramic material. And it has excellent physical and chemicalperformance. Such as a high melting point ( 2980 AC), high hardness ( 34 GPa),and its density is 4.52 g/cm3.

Itcould stand wear and tear, also resist acid-alkali. Its electric performance isgood (P=14.4I14I.cm), heat-conducting property is strong (25J/m.s.k).

Andit has excellent chemical stability and thermal shock resistant performance.

Titaniumdiboride and its composite materials are innovative and high technologymaterials that were widely concerned and putative that have promotional valueand application prospects.

TitaniumBoride Micro Powder Related Information:

Airtight sealed, avoid light andkeep dry at room temperature.

Please contact us for customizationand price inquiry Email: contact@nanochemazone.com

Note: We supply different size rangesof Nano and micron as per the clientas requirements and also acceptcustomization in various parameters.



Exceptional Properties for Demanding Applications

Titanium Boride Powder is engineered to deliver unmatched hardness, thermal stability, and electrical performance. Its hexagonal (AlB2-type) crystal structure and high purity (99%) make it highly favorable for applications requiring both durability and conductivity. Whether used in ceramics or as cathode coatings, its consistent particle size aids in processing and enhances final product quality.


Versatile Uses Across Multiple Industries

From research facilities to industrial manufacturing, Titanium Boride Powder is ideal for an array of applications. It serves as a premier material in conductive and composite ceramics, cathode coatings for aluminum cells, and PTC heating components. Its inert and non-poisonous nature, combined with strict adherence to safety standards, make it suitable for professional environments.

FAQ's of Titanium Boride Powder:


Q: How should Titanium Boride Powder be stored to maintain its quality?

A: It should be kept tightly sealed in a cool, dry place, away from humidity and direct sunlight to prevent contamination or degradation. Proper storage ensures long-term stability and product integrity.

Q: What are the primary industrial applications of Titanium Boride Powder?

A: This powder is primarily used in conductive ceramic materials, cathode coatings for electrolytic aluminum cells, composite ceramics, and PTC heating ceramics, serving research, industrial, and electronic sectors.

Q: When is Titanium Boride Powder preferred over other ceramic powders?

A: It is chosen for situations requiring high hardness, excellent thermal conductivity, low electrical resistivity, and chemical stability at extremely high temperatures-attributes critical in advanced ceramics and specialty coatings.

Q: Where is Titanium Boride Powder mainly produced or supplied in Canada?

A: Titanium Boride Powder is available through multiple channel partners in Canada, including dealers, manufacturers, exporters, importers, suppliers, and wholesalers for industrial and research needs.

Q: What is the typical process for using Titanium Boride Powder in ceramic components?

A: The powder is usually blended with other materials, shaped, and then sintered at high temperatures. Its fine particle size (<10 m) ensures homogeneous mixing and superior final properties in the ceramic matrix.

Q: What are the main benefits of using Titanium Boride Powder in electronic applications?

A: Its excellent electrical conductivity and high thermal stability boost device reliability and efficiency. Being non-magnetic and non-poisonous, it is both safe and effective in sensitive electronic and research environments.

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