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Titanium Aluminum Carbide | Ti2AlC | MAX Phase Powder

HM2866

New product

Titanium Aluminum Carbide (Ti2AlC) Powder is a MAX phase ceramic with a unique layered structure, combining metallic conductivity with ceramic-like high-temperature strength and oxidation resistance. HM is a professional supplier and manufacturer of high-quality Ti2AlC Powder, offering customized solutions and competitive prices.

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Data sheet

Particle Size325 mesh, or customized
ColorBlack-gray
Melting Piont2000℃
Molecular FormulaTi2AlC
Molecular Weight195.7 g/mol
CAS12537-81-4

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Titanium Aluminum Carbide (Ti2AlC) Powder is a MAX phase ceramic with a hexagonal layered structure, offering a combination of metallic and ceramic properties. It exhibits high electrical and thermal conductivity, excellent machinability at room temperature, and plastic deformation capability at high temperatures. Ti2AlC also features remarkable thermal stability, oxidation resistance, and mechanical strength, making it suitable for demanding environments. Applications include high-temperature coatings, MXene precursor materials, self-lubricating ceramics, lithium-ion batteries, supercapacitors, and electrochemical catalysis. Heeger Materials provides high-quality Titanium Aluminum Carbide (Ti2AlC) to meet various industrial and research needs.
Titanium Aluminum Carbide | Ti2AlC | MAX Phase Powder
  • Chemical Formula: Ti2AlC
  • CAS Number: 12537-81-4
  • Morphology: Irregular
  • Solubility: Insoluble in water

Titanium Aluminum Carbide (Ti2AlC) Powder Specifications

Product

Chemical Composition (%)

Ti2AlC

Ti

C

Al

Other impurity allowance

72.4

8.9

18.2

0.5

Particle Size

325 mesh (D50: 0.8-10μm)

Titanium Aluminum Carbide (Ti2AlC) Powder Properties

Category

Parameter

Value

Mechanical Properties

Compressive Strength (MPa)

764

Flexural Strength (MPa)

375 ± 15

Fracture Toughness (MPa·m¹/²)

7.2

Vickers Hardness (GPa)

3.5

Young's Modulus (GPa)

297

Electrical Properties

Conductivity (×10⁶ S·m⁻¹)

2.9(25°C)

0.85(800°C)

Electrical Resistivity Temp. Coefficient (×10⁻³ K⁻¹)

3.1

Thermal Properties

Thermal Expansion Coefficient (×10⁻⁶ K⁻¹)

9.0

Thermal Shock Resistance

Excellent

High-Temperature Stability

Excellent

Titanium Aluminum Carbide (Ti2AlC) Powder SEM

Titanium Aluminum Carbide (Ti2AlC) Powder SEM  Titanium Aluminum Carbide (Ti2AlC) Powder SEM

Titanium Aluminum Carbide (Ti2AlC) Powder Applications

  • High-Temperature Coatings: Enhances resistance to oxidation, wear, and thermal stress in extreme environments.
  • MXene Precursor: Serves as a starting material for MXene synthesis, enabling advanced applications in energy storage and electronics.
  • Self-Lubricating Conductive Ceramics: Provides excellent electrical conductivity and lubrication for high-performance ceramic components.
  • Lithium-Ion Batteries & Supercapacitors: Improves electrochemical performance for energy storage applications.
  • High-Performance Structural Materials: Used in aerospace engines and other demanding high-temperature environments.

Titanium Aluminum Carbide Powder Packing And Shipping

Titanium Aluminum Carbide (Ti2AlC) Powder should be stored in a sealed container in a dry and cool place and unexposed to air for an extended time. HM offers vacuum-sealed packaging, including 100g/bag, 500g/bag, 1kg/bag, and 25kg/drum or customized packaging as per specific requirements.

Titanium Aluminum Carbide | Ti2AlC | MAX Phase Powder Packing

Where to Buy Titanium Aluminum Carbide (Ti2AlC) Powder in Bulk?

Heeger Materials Inc., a professional supplier and manufacturer of high-quality MAX Phase Ceramic Materials products including Titanium Aluminum Carbide (Ti2AlC) Powder, leverages extensive expertise in supply and export to offer competitive prices. We provide customized solutions to meet specific requirements, ensuring exceptional quality and customer satisfaction.

Heeger Materials Inc. was established in 2016 in Colorado, USA. We specialize in premium-grade metals, alloys, ceramics, powders, and other materials catering to research, development, and large-scale industrial production in scientific and industrial sectors. 

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