Fe2AlB2 MAB Phase Powder

Fe2AlB2 MAB Phase Powder
- Custom sizes and standard sizes in stock
- Quick Lead Time
- Competitive Price
Fe2AlB2 MAB Phase Powder is a high-purity (≥99%) layered boride with excellent thermal stability, mechanical durability, and oxidation resistance. Available in multiple particle sizes, it serves as a reliable material for protective coatings, high-temperature structural parts, and advanced ceramic composites. As a leading supplier and manufacturer of premium MAB Phase Powder products, Shanghai Yuepeng can supply high-quality Fe2AlB2 MAB Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.
Fe2AlB2 MAB Phase Powder Data Sheet
| Purity: | ≥99% |
| Size : | 200 mesh (~78 µm), 300 mesh (~56 µm), 400 mesh (~38 µm), 500 mesh (~20 µm), or customized |
Fe2AlB2 MAB Phase Powder Description
Fe2AlB2 MAB Phase Powder is a layered ternary boride combining metallic conductivity, mechanical strength, and thermal stability. Its orthorhombic layered crystal structure imparts anisotropic properties, making it valuable for functional materials, coatings, and ceramic composites. With excellent oxidation and wear resistance, it performs well in high-temperature environments and protective applications. Produced with ≥99% purity and available in multiple particle sizes (200 mesh ~78 μm, 300 mesh ~56 μm, 400 mesh ~38 μm, 500 mesh ~20 μm), the powder ensures consistent quality. Its gray-black color and pressureless sintering process enhance stability and versatility for both industrial and research use.
Fe2AlB2 MAB Phase Powder Specifications
| Product Name | Iron Aluminum Boride |
| Chemical Formula | Fe2AlB2 |
| Particle Size | 200 mesh (~78 µm), 300 mesh (~56 µm), 400 mesh (~38 µm), 500 mesh (~20 µm), or customized |
| Purity | ≥99% |
| Structure | Layered block |
| Color | Gray-black |
| Forming Method | Pressureless sintering |
| Shelf Life | 6 months (sealed, avoid light, and sealing for inert air protection) |
Fe2AlB2 MAB Phase Powder Element Analysis
| Element | Weight Percent (wt%) | Atomic Percent (at%) |
| B | 29.54 | 48.18 |
| C | 15.81 | 23.21 |
| O | 9.65 | 10.63 |
| Mg | 0.22 | 0.16 |
| Al | 10.72 | 7.01 |
| Ca | 0.41 | 0.18 |
| Mn | 0.51 | 0.16 |
| Fe | 33.14 | 10.47 |
*This data represents a single measurement, and there may be fluctuations between different batches.
Fe2AlB2 MAB Phase Powder SEM and XRD
Fe2AlB2 MAB Phase Powder Features
- High Thermal Stability: Maintains structural integrity and performance at elevated temperatures.
- Excellent Mechanical Strength: Layered block structure provides robust wear and impact resistance.
- Oxidation and Corrosion Resistance: Ensures durability in harsh chemical and high-temperature environments.
- Uniform Particle Size Distribution: Available in 200–500 mesh sizes for precise material processing.
- Pressureless Sintered Fabrication: Guarantees high purity and structural consistency for industrial and research applications.
Fe2AlB2 MAB Phase Powder Applications
- Magnetic and Electronic Devices: Fe2AlB2 exhibits ferromagnetic properties, making it useful for magnetic sensors, data storage materials, and magneto-electronic devices.
- High-Temperature Structural Materials: Its strong bonding and thermal stability allow Fe2AlB2 to perform reliably in high-temperature environments such as turbines and heat-resistant components.
- Protective and Functional Coatings: The material can be used to produce oxidation- and wear-resistant coatings, extending the lifespan of metallic and ceramic substrates.
- Reinforcement in Composites: When incorporated into composite materials, Fe2AlB2 enhances mechanical strength, hardness, and thermal conductivity for industrial and engineering applications.
- Scientific Research and Material Development: Fe2AlB2 serves as a model compound for studying MAB phase materials, magnetic behaviors, and boride-based advanced material systems.
- 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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