

Stanford Advanced Materials (SAM) is a trusted manufacturer and supplier of premium FeCoNi86Al7Ti7 High-Entropy Alloy (HEA) Spherical Powder. Engineered for high-performance applications, this advanced material delivers outstanding strength, exceptional heat resistance, and superior corrosion durability, making it ideal for industries such as aerospace, automotive, and energy.
Related products: AlCoCrFeMo High-Entropy Alloy (HEA) Spherical Powder, AlCoCrFeNiCu High-Entropy Alloy (HEA) Spherical Powder
Stanford Advanced Materials (SAM) is a trusted manufacturer and supplier of premium FeCoNi86Al7Ti7 High-Entropy Alloy (HEA) Spherical Powder. Engineered for high-performance applications, this advanced material delivers outstanding strength, exceptional heat resistance, and superior corrosion durability, making it ideal for industries such as aerospace, automotive, and energy.
Related products: AlCoCrFeMo High-Entropy Alloy (HEA) Spherical Powder, AlCoCrFeNiCu High-Entropy Alloy (HEA) Spherical Powder
FeCoNi86Al7Ti7 High-Entropy Alloy (HEA) Spherical Powder is an advanced material primarily composed of iron (Fe), cobalt (Co), and nickel (Ni), with significant additions of aluminum (Al) and titanium (Ti) in a specific ratio (86% Ni, 7% Al, 7% Ti). As a high-entropy alloy, it features a near-equiatomic composition of its principal elements, resulting in exceptional properties derived from its complex atomic structure.
The spherical powder morphology ensures excellent flowability and uniform distribution, making it ideal for additive manufacturing (3D printing), powder metallurgy, and other precision fabrication techniques. This alloy exhibits outstanding mechanical strength, superior wear and corrosion resistance, and remarkable thermal stability, making it well-suited for demanding applications in extreme environments.
Composition |
FeCoNi86Al7Ti7, customized |
Shape |
Spherical Powder |
Particle Size |
15-53μm, 45-105μm, or customized |
Appearance |
Grey powder |
Melting Point |
1350-1450℃ |
Our products are typically packaged in PE (polyethylene) bags to ensure secure containment and prevent contamination. For materials sensitive to moisture or oxidation, we offer vacuum-sealed packaging to maintain product stability and purity. The packaging is customizable based on the product’s quantity and specifications, allowing us to meet specific customer needs.
Packaging: PE Bags, Cartons, or Customized.
Q1. What is FeCoNi86Al7Ti7 High-Entropy Alloy (HEA) Spherical Powder?
FeCoNi86Al7Ti7 HEA Spherical Powder is a high-entropy alloy primarily consisting of iron (Fe), cobalt (Co), and nickel (Ni), with controlled additions of aluminum (Al) and titanium (Ti). It is engineered to deliver exceptional mechanical properties, including high strength, excellent thermal stability, and superior corrosion resistance.
Q2. What are the key properties of FeCoNi86Al7Ti7 HEA Spherical Powder?
High Strength & Toughness: The alloy exhibits outstanding mechanical strength and toughness, making it suitable for high-stress applications.
Exceptional Corrosion Resistance: It demonstrates superior resistance to oxidation and corrosion, particularly in aggressive environments.
Excellent Thermal Stability: The alloy maintains its structural integrity and performance even under high-temperature and thermal cycling conditions.
Q3. What are the applications of FeCoNi86Al7Ti7 HEA Spherical Powder?
Aerospace: Used in high-performance components such as turbine blades, engine parts, and structural elements requiring extreme strength and heat resistance.
Automotive: Ideal for engine components, transmission systems, and high-stress automotive parts due to its durability and thermal stability.
Energy Industry: Suitable for high-temperature applications in power plants and nuclear reactors where materials face extreme operational conditions.
Additive Manufacturing: Widely used in 3D printing and powder metallurgy to produce precision components with superior mechanical and thermal properties.