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Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry

WUXI SLAST SPECIAL STEEL CO., LTD
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Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry

Brand Name : Wuxi Slast/Sylaith Special Steel Co., LTD

Certification : MTC

Place of Origin : JIANGSU, CHINA

MOQ : 10KG

Payment Terms : T/T

Supply Ability : 100+ton/tons+month

Delivery Time : 7-15 days or as requirements

Packaging Details : Standard Export Seaworthy Package. Suit for all kinds of transport, or as required

Dimensions : 200mesh,10-220um,50nm 300nm 5um 1um,1um

Bulk Density : 2.0 - 3.0 g/cm³

Appearance : Reddish-brown metallic powder

Storage Conditions : Keep in a cool, dry place

Use : Metallurgy

Chemical Composition : Cu ≥ 99.9%

Other Name : Nano Copper Powder

Function : Cleaning

Moisture Content : < 0.1%

Form : Powder

Melting Point : 1085 °C

Particle Size : 10-50 microns

Density : 8.96 g/cm³

Applications : Electronics, metallurgy, conductive inks, catalysts

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Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry
Description

Source high-performance Water Gas Atomized and Electrolytic Ultra Fine Pure Copper Powder for your advanced industrial needs. This premium nano and fine copper powder boasts purity levels >98% and is available in a distinctive red-orange color. Produced using advanced atomization technologies like the Plasma Rotating Electrode Process (PREP), it guarantees high sphericity (>95%), excellent flowability, and no hollow particles. Ideal for 3D Printing (Additive Manufacturing), Laser Cladding, Hot Isostatic Pressing (HIP), and Thermal Spraying, this copper powder ensures superior results in creating conductive, durable, and high-density components. With a customizable particle size range and a production capacity backed by rigorous quality control, it is the perfect material for aerospace, automotive, and general manufacturing sectors.

Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry
Product Parameters Table
Parameter Category Details
Product Name Ultra Fine / Nano Copper Powder
Production Method Water/Gas Atomization, Electrolytic, Plasma Rotating Electrode Process (PREP)
Purity >98%
Shape Spherical
Color Red and Orange
Particle Size 15-45 microns, 45-105 microns, 45-150 microns (Customizable)
Key Properties High Sphericity (>95%), No Hollow Powder, Good Fluidity, High Density, Narrow Particle Size Distribution
Oxygen Control Low oxygen increment, effectively controlled within specified limits (e.g., 50-100ppm for various metals)
Packaging Plastic in Carton or Iron Drum
Production Capacity 5000 kg/Year
Applications
  • Additive Manufacturing & 3D Printing: Used to create complex, high-resolution parts with excellent electrical and thermal conductivity. The spherical shape and fine size ensure smooth layer deposition and high-density prints.
  • Laser Cladding & Thermal Spraying: Serves as a coating material to enhance surface properties of components, providing superior wear resistance, corrosion protection, and improved thermal/electrical characteristics.
  • Powder Metallurgy (PM) & Metal Injection Molding (MIM): Enables the production of net-shape or near-net-shape parts with fine details and good mechanical properties, ideal for high-volume manufacturing.
  • Hot Isostatic Pressing (HIP): Used in HIP processes to eliminate porosity in castings and consolidate metal powders into fully dense, high-integrity components for critical aerospace and medical applications.
  • Aerospace & Automotive: Applied in the manufacturing of high-temperature structural materials, engine components, and various spacecraft parts where material performance and reliability are paramount.
Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry
How It Works (Production Principle)

The high-quality spherical copper powder is primarily produced via the Plasma Rotating Electrode Process (PREP):

  1. Melting: A solid copper electrode rod is rapidly rotated at high speed. Its end face is melted by a high-temperature plasma arc, forming a thin layer of liquid metal.
  2. Atomization: Centrifugal force from the high-speed rotation causes the molten liquid to be ejected and broken up into numerous fine, uniform droplets.
  3. Spheroidization & Solidification: As these tiny droplets travel through the inert gas atmosphere, surface tension pulls them into perfect spheres. They solidify rapidly mid-air before collection, resulting in spherical powder with high sphericity, no hollow particles, and very low oxygen content.
Weight Packing
<25KG By foil-alum bag/pap/bottle
≥25kg 25kg/drum/bag or as requested

Store in tightly closed containers in a dry, well-ventilated place. Vacuum packaging available for optimal preservation.

PACKING AND SHIPPING
Water Gas Atomized Electrolytic Ultra Fine Pure Nano Copper Powder for Industry
Frequently Asked Questions
Q1: What is the key difference between water/gas atomized and PREP copper powder?

A1: While both are atomization methods, PREP (Plasma Rotating Electrode Process) typically produces powder with higher sphericity, fewer satellite particles, and virtually no hollow powder due to its centrifugal force-based mechanism, resulting in better flowability and packing density for critical applications like 3D printing.

Q2: Why is the spherical shape of the copper powder so important?

A2: A spherical shape is critical for applications like 3D printing and Metal Injection Molding (MIM) because it ensures excellent powder flowability. This allows for uniform spreading and packing, leading to higher density, better surface finish, and more consistent mechanical properties in the final product.

Q3: Can you customize the particle size distribution?

A3: Yes, our production process allows for effective control over the particle size distribution. We offer standard ranges like 15-45µm but can customize the size to meet specific application requirements, ensuring optimal performance for your process.

Q4: How is the low oxygen content achieved and why is it important?

A4: The low oxygen content is achieved through an inert gas atmosphere during the atomization and subsequent two-step treatment processes. Low oxygen is vital as it prevents oxidation, which can degrade the powder's electrical conductivity, solderability, and overall mechanical performance in the final component.

Q5: What is your annual production capacity, and what is the standard packaging?

A5: Our annual production capacity is 5000 kg. Standard packaging is in plastic bags placed within cartons or iron drums to ensure the powder is protected from moisture and contamination during transport and storage.


Product Tags:

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