Ti2AlN MAX Phase Powder

Ti2AlN MAX Phase Powder

Ti2AlN MAX Phase Powder

  • Tamaños personalizados y estándar en stock
  • Plazo de entrega rápido
  • Precio competitivo

Ti2AlN MAX Phase Powder is a nanolaminated material with combined metallic and ceramic properties, offering high thermal stability, oxidation resistance, and good electrical conductivity. It is widely explored for applications in high-temperature coatings, structural components, and functional materials. We can supply high-quality Ti2AlN MAX Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.

O envíenos un correo electrónico a sales@heegermaterials.com.

Ti2AlN MAX Phase Powder Data Sheet

Pureza:≥98%
Tamaño :Malla 200~500 o personalizada

Ti2AlN MAX Phase Powder Description

Ti2AlN MAX Phase Powder is a layered ternary carbide-nitride that combines metallic conductivity and machinability with ceramic advantages such as high-temperature stability and oxidation resistance. As part of the MAX phase family, it offers excellent damage tolerance, low thermal expansion, and strong thermal shock resistance. Its nanolaminated structure bridges metals and cerámica, ensuring a balance of strength, toughness, and performance. In powder form, Ti2AlN is suitable for hot pressing, spark plasma sintering, and additive manufacturing to produce advanced components.

Ti2AlN MAX Phase Powder Features

  • Layered Nanolaminate Structure: Provides a unique combination of metallic and ceramic characteristics, enhancing both strength and machinability.
  • Estabilidad a altas temperaturas: Maintains structural integrity and performance under extreme thermal conditions.
  • Excellent Oxidation and Thermal Shock Resistance: Ensures long-term reliability in aerospace, energy, and high-performance environments.
  • Low Thermal Expansion Coefficient: Minimizes thermal mismatch with other engineering materials, improving component durability.
  • Versatile Processability: Suitable for sintering, hot pressing, and additive manufacturing, enabling flexible design of advanced components.

Ti2AlN MAX Phase Powder Applications

  • Componentes aeroespaciales: Used in high-temperature structural parts due to its oxidation resistance and thermal shock stability.
  • Dispositivos electrónicos: Serves as a conductive and thermally stable material for electrical contacts and protective coatings.
  • Sistemas de energía: Applied in nuclear and thermal power equipment where long-term durability under extreme conditions is essential.
  • Revestimientos protectores: Provides wear resistance and corrosion protection for cutting tools, turbines, and industrial machinery.
  • Advanced Manufacturing: Enables the fabrication of lightweight yet durable composites via hot pressing, spark plasma sintering, and additive manufacturing.

Ti2AlN MAX Phase Powder Packaging

Ti2AlN MAX Phase Powder is typically packaged in sealed, moisture-proof plastic bags, then placed in sturdy drum containers or fiber cartons to prevent contamination and ensure safe transport. Standard packaging sizes include 1 kg, 5 kg, and 10 kg options, with custom packaging available upon request to meet specific usage or storage needs.

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Lo comprobaremos y le responderemos en 24 horas.

To customize your Ti2AlN MAX phase powder, please provide the following details:

  1. Tamaño de las partículas: Especifique la granulometría o el intervalo deseado.
  2. Pureza del material
  3. Cantidad de los polvos que necesita.

Una vez que tengamos estos datos, podremos facilitarle un presupuesto en 24 horas.

Disponemos en stock de una amplia variedad de productos en polvo de la serie de fase MAX, para los que generalmente no se requiere un pedido mínimo. Sin embargo, para los pedidos personalizados, solemos establecer un valor mínimo de pedido de $200. El plazo de entrega de los artículos en stock suele ser de 1-2 semanas, mientras que el de los pedidos personalizados suele ser de 3-4 semanas, dependiendo de las características específicas del pedido.

The nanolaminated crystal structure provides a combination of metal-like conductivity and ceramic-like strength. This structural arrangement gives Ti2AlN excellent damage tolerance, crack deflection ability, and resistance to catastrophic failure under mechanical or thermal stress.

Ti2AlN powder can be fabricated into dense components using hot pressing, spark plasma sintering (SPS), and additive manufacturing methods. These processes allow for controlled microstructures that optimize its mechanical strength and thermal properties.


Advanced Ceramic Hub, fundada en 2016 en Colorado (Estados Unidos), es un proveedor y fabricante especializado en productos de polvo de fase MAX. Con una amplia experiencia en suministro y exportación, ofrecemos precios competitivos y soluciones personalizadas adaptadas a requisitos específicos, garantizando una calidad excepcional y la satisfacción del cliente. Como proveedor profesional de cerámicas, metales refractarios, aleaciones especiales, polvos esféricos y diversos materiales avanzados, atendemos las necesidades de investigación, desarrollo y producción industrial a gran escala de los sectores científico e industrial.

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