Plasma Atomization Series HG-PA
Plasma Atomization Series HG-PA

Plasma Atomization Series HG-PA

The HG-PA system is designed to produce platinum, pure slver and is aloys, titanium and ttanlum alloys, nicke-based aloys.refracbry metals, and other metal powders. These materials are wdely used in advanced adtitive manufacturing processes such as laserpowder bed fusion(LPBF), electron beam melting (EBM), laser direct energy deposition (DED), and hot isostatic pressing (HIP) of powder-based preforms.

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  • Product Description
  • Specification
  • Process Characteristics

Product Description

The HG-PA system is designed to produce platinum, pure silver and its alloys, titanium and titanium alloys, nickel-based alloys, refractory metals, and other metal powders. These materials are widely used in advanced additive manufacturing processes such as laser powder bed fusion(LPBF), electron beam melting (EBM), laser direct energy deposition (DED), and hot isostatic pressing (HIP) of powder-based preforms.

Specification

Equipment Models & Parameters



Parameter TypePA
Plasma Power (kW)50-100
Total Power (kW)370
Ultimate Vacuum (Pa)6.67×10⁻¹Pa
Number of Plasma Generators (set)3
Wire Diameter (mm)3.0-3.2
Time to Reach Operating Vacuum (min)≤20
Leak Rate (Pa/h)≤20
Dimensions (m)5×5×5.5



Compatible Materials & Performance Metrics


Metric TypeTitanium Alloy Powder 0~53μm
Yield (%)≥55
Oxygen Increase (ppm)≤300
Sphericity (%)≥93
Powder Yield (%)≥94
Production Efficiency (kg/h)3-5

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   *The above data are obtained under HG-ATOMI operating conditions. The final equipment parameters are subject to the actually sold products.

Process Characteristics

  • Process Characteristics

    Non-Contact Melting

    No contact with ceramic crucibles during melting, ensuring impurity-free production and high-purity powders

  • Process Characteristics

    Broad Material Compatibility

    Capable of processing reactive and refractory metals including silver, titanium, platinum, zirconium, molybdenum, tungsten, and their alloys

  • Process Characteristics

    High Powder Quality

    Produces powders with high sphericity, low satelliting, and excellent flowability

  • Process Characteristics

    Low Operating Cost

    Reduced gas consumption and overall
    energy usage

  • Process Characteristics

    Innovation

    The plasma generator instantly melts and atomizes wire feedstock via
    high-kinetic impact, producing highly spherical powders

  • Process Characteristics

    Smart

    Integrated Operation
    Real-time monitoring and traceable production data

  • Process Characteristics

    Seamless

    The plasma generator system allows adjustable current to produce powders
    of various materials and particle sizes for continuous batch production

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