Ni3.5Co3Cr1.5 spherical high-entropy alloy (HEA) powder is a high-performance material tailored for advanced industrial applications. With a precise combination of nickel, cobalt, and chromium, this alloy delivers exceptional thermal stability, mechanical strength, and corrosion resistance.
The spherical morphology ensures excellent flowability, making it ideal for additive manufacturing, powder metallurgy, and thermal spray applications. This alloy is particularly valued in aerospace, energy, and automotive sectors for its robust performance under extreme conditions.
The properties of Ni3.5Co3Cr1.5 are derived from its carefully balanced elemental makeup:
Element | Composition (Atomic Ratio) | Role and Contribution |
---|---|---|
Nickel (Ni) | 3.5 | Enhances toughness and thermal stability. |
Cobalt (Co) | 3.0 | Contributes to high-temperature strength and wear resistance. |
Chromium (Cr) | 1.5 | Provides corrosion resistance and surface durability. |
This combination ensures a versatile material with superior performance in demanding environments.
Property | Value/Range | Significance |
---|---|---|
Density | ~8.2 g/cm³ | Offers a balance of weight and strength. |
Melting Point | 1350–1450°C | Suitable for high-temperature applications. |
Hardness | ~450–600 HV | Ensures excellent wear resistance. |
Tensile Strength | ~950–1200 MPa | Provides superior load-bearing capacity. |
Thermal Conductivity | 18–22 W/m·K | Facilitates efficient heat dissipation. |
Corrosion Resistance | High | Performs well in oxidative and corrosive environments. |
Particle Size | 15–50 μm | Optimized for additive manufacturing and coatings. |
Ni3.5Co3Cr1.5 powder is widely used in industries requiring high-performance materials:
Application | Industry | Details |
---|---|---|
Additive Manufacturing | Aerospace, Automotive | Produces lightweight, durable components. |
Thermal Spray Coatings | Energy, Marine | Protects surfaces from wear and corrosion. |
Powder Metallurgy | Industrial, Electronics | Creates precise, high-strength parts. |
High-Temperature Alloys | Aerospace, Energy | Suitable for turbine blades and heat exchangers. |
Structural Components | Automotive, Construction | Delivers reliability in extreme conditions. |
Specification | Details |
---|---|
Particle Size Range | 15–50 μm for additive manufacturing, 50–100 μm for coatings. |
Purity | ≥ 99.5% (high-purity alloy powder). |
Standard Compliance | ISO 9001, ASTM F3049, AS9100 (aerospace-grade material). |
Packaging Options | Vacuum-sealed containers (1 kg, 5 kg, 10 kg) to maintain quality. |
Advantages | Limitations |
---|---|
High corrosion and oxidation resistance. | Higher cost compared to traditional alloys. |
Excellent thermal and mechanical stability. | Requires specialized manufacturing techniques. |
Spherical morphology enhances processability. | Limited availability in certain regions. |
Suitable for high-temperature applications. | Not ideal for low-budget projects. |
What is Ni3.5Co3Cr1.5 spherical HEA powder?
It is a high-entropy alloy powder designed for advanced manufacturing, featuring a unique blend of nickel, cobalt, and chromium.
What industries benefit from this alloy?
Industries like aerospace, automotive, and energy leverage its properties for high-performance applications.
Why is the powder spherical?
Spherical particles improve flowability and uniformity, crucial for additive manufacturing and coatings.
What are its key advantages?
High corrosion resistance, thermal stability, and wear resistance make it ideal for demanding applications.
Is it suitable for high-temperature environments?
Yes, its thermal stability ensures reliable performance in extreme conditions.
Ni3.5Co3Cr1.5 spherical high-entropy alloy powder is a versatile and high-performance material engineered for cutting-edge applications. Its optimized composition and properties make it an ideal choice for additive manufacturing, thermal spray coatings, and high-temperature structural components.
Industries seeking advanced solutions for extreme environments can rely on Ni3.5Co3Cr1.5 for consistent and superior results.