Catalog No. | DP5602 |
Content | CuTiZrNi |
Shape | Spherical Powder |
Particle Size | 10-90μm |
Spherical Cu-based Powder CuTiZrNi is a copper-based alloy powder enriched with titanium (Ti), zirconium (Zr), and nickel (Ni) as alloying elements. Stanford Advanced Materials (SAM) specializes in providing this high-purity powder at competitive prices.
Related products: GRCop-42 Copper Alloy Spherical Powder, CuCrNb, Spherical Cu-based Powder CuZrAlCo, Spherical Cu-based Powder CuTiZrNiSnSi
Spherical Cu-based Powder CuTiZrNi is a copper-based alloy powder that includes titanium (Ti), zirconium (Zr), and nickel (Ni) as alloying elements. This specialized alloy is designed to combine the excellent electrical and thermal conductivity of copper with the mechanical strength, corrosion resistance, and wear resistance provided by titanium, zirconium, and nickel. The spherical shape of the powder particles optimizes flowability and packing density, which is particularly beneficial for applications in additive manufacturing (3D printing), powder metallurgy, and as a material for coatings.
MGs Composition |
Cu47Ti34Zr11Ni8 |
Powder size (μm) |
10-90, or customized |
Technique |
SLM |
Shape |
Spherical Powder |
Our Spherical Cu-based Powder CuTiZrNi is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Q1: What is the composition of Spherical Cu-based Powder CuTiZrNi?
CuTiZrNi is a copper-based alloy that includes Copper (Cu) as the base metal, with alloying elements such as Titanium (Ti), Zirconium (Zr), and Nickel (Ni). These elements are carefully selected to enhance the powder’s properties, such as strength, corrosion resistance, and thermal stability.
Q2: What are the key properties of CuTiZrNi powder?
Enhanced mechanical properties: High strength, good wear resistance, and superior hardness.
Corrosion resistance: Improved resistance to oxidation and corrosion compared to pure copper.
Thermal and electrical conductivity: Maintains high conductivity for efficient heat transfer and electrical applications.
Q3: What is the particle size distribution of CuTiZrNi powder?
The particle size distribution of CuTiZrNi powder typically ranges from 10 µm to 90 µm, with custom sizes available depending on the specific requirements for 3D printing or powder metallurgy.
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