TiVCrMoAlC3 MAX Phase Powder

TiVCrMoAlC3 MAX Phase Powder
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TiVCrMoAlC3 MAX Phase Powder is a multi-metal layered carbide with excellent thermal stability, mechanical toughness, and oxidation resistance. It is suitable for high-temperature coatings, structural materials, and MXene-related applications. As a leading supplier and manufacturer of premium MAX Phase Powder products, Shanghai Yuepeng can supply high-quality TiVCrMoAlC3 MAX Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.
TiVCrMoAlC3 MAX Phase Powder Data Sheet
| Purity: | ≥99% |
| Size : | 200~500 mesh or customized |
TiVCrMoAlC3 MAX Phase Powder Description
TiVCrMoAlC3 MAX Phase Powder is a quaternary layered carbide combining titanium, vanadium, chromium, molybdenum, aluminum, and carbon into a stable hexagonal MAX phase structure. This advanced material integrates metallic conductivity with ceramic-like properties, providing high thermal stability, mechanical strength, and oxidation resistance. The multi-transition metal composition enhances corrosion resistance and toughness, making it suitable for high-temperature structural components, protective coatings, and functional materials. TiVCrMoAlC3’s layered structure also allows for MXene derivation, expanding its applications in energy storage, catalysis, and advanced electronic devices. Its multifunctional characteristics make it ideal for research and industrial applications where durability and conductivity are required. cutting-edge research.
TiVNbMoAlC3 MAX Phase Powder Features
- Layered Hexagonal Structure: Exhibits a stable hexagonal layered crystal typical of MAX phases, combining metallic and ceramic attributes.
- High Thermal and Oxidation Resistance: Maintains performance under extreme temperature and oxidative conditions.
- Enhanced Mechanical Strength: Multi-transition metal composition improves toughness and damage tolerance.
- Electrical and Thermal Conductivity: Provides reliable conductivity for energy storage and electronic applications.
- MXene Precursor Potential: Can be used to produce TiVCrMoC-based MXenes for catalysis, batteries, and advanced devices.
TiVNbMoAlC3 MAX Phase Powder Applications
- High-Temperature Structural Components: TiVNbMoAlC3 MAX phase powder exhibits strong thermal and mechanical stability, making it suitable for aerospace parts, turbine components, and other high-temperature structural uses.
- Protective and Anti-Oxidation Coatings: Its excellent oxidation and wear resistance allow it to serve as a protective coating for metals, ceramics, and alloys operating in extreme environments.
- Electrical and Thermal Conductive Materials: With good electrical and thermal conductivity, TiVNbMoAlC3 is applied in conductive coatings, heating elements, and electronic packaging materials.
- Energy Storage Applications: The layered structure of TiVNbMoAlC3 enhances ion transport, making it useful for electrode materials in lithium-ion and sodium-ion batteries.
- Corrosion-Resistant Equipment: Thanks to its chemical stability, TiVNbMoAlC3 MAX phase powder is used in the production of corrosion-resistant components for chemical processing and marine applications.
- Electrical and Thermal Conductive Parts
- High-Temperature Structural Materials
- Protective Coatings
- Refractory and Composite Materials
- Research and Development of Novel Materials
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