Spherical Zr-based Powder ZrCuNiAl Description
Spherical Zr-based Powder ZrCuNiAl is an advanced alloy powder composed mainly of zirconium (Zr), with significant additions of copper (Cu), nickel (Ni), and aluminum (Al). This alloy blend is engineered to enhance the base properties of zirconium, such as its high corrosion resistance and strength at elevated temperatures, by adding elements that contribute to improving its mechanical strength, thermal stability, and wear resistance. The powder's spherical shape significantly benefits manufacturing processes that require excellent flowability and high packing density, such as additive manufacturing (3D printing), powder metallurgy, and for use in creating high-performance coatings.
Spherical Zr-based Powder ZrCuNiAl Specifications
MGs Composition
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Zr66Cu13Ni6Al15
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Powder size (μm)
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10-90, or customized
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Technique
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SLM
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Shape
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Spherical Powder
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Spherical Zr-based Powder ZrCuNiAl Applications
- Aerospace Industry: For components that require high strength-to-weight ratios, excellent corrosion resistance, and the ability to withstand high temperatures, such as engine parts, airframe structures, and exhaust systems.
- Nuclear Applications: Given zirconium's low neutron absorption cross-section, this alloy can be used in nuclear reactors, particularly in cladding for fuel rods and other structural components.
- Chemical Processing: Equipment and components that are exposed to corrosive substances benefit from the alloy's superior corrosion resistance.
- Medical Devices: Due to its biocompatibility and corrosion resistance, the alloy can be used in surgical instruments, implants, and other medical devices.
- Additive Manufacturing: The spherical powder is ideal for 3D printing complex, precise components that require specific material properties for high-performance applications.
Spherical Zr-based Powder ZrCuNiAl Packaging
Our Spherical Zr-based Powder ZrCuNiAl is carefully handled during storage and transportation to preserve the quality of our product in its original condition.