• NHL PA150 Supersonic Plasma Powder Atomizer

    The system offers low production costs, minimal doping, and high production capacity!

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    The NHL PA150 Supersonic Plasma Atomization System employs a unique plasma wire atomization technology developed by Navector Laboratory. The process uses one or more plasma torches to generate high-temperature, high-speed thermal plasma jets, which simultaneously melt and atomize the raw metal wire into fine metal droplets. These droplets are then solidified and cooled to form fine metal powders.

    Our blasting and peening media are vital for surface treatment processes. Designed to enhance material properties and improve surface finishes, these ceramic media are suitable for a wide range of applications across various industries, ensuring durability and performance. Blasting and Peening Media Our Expertise brighture materials authorized dealer of Saint-Gobain ZirPro which is specializing in zirconium-based materials, including ceramic grinding beads, blasting and peening media, and zirconium oxide powders. These products are engineered to meet the demanding requirements of various industries worldwide. 
Product Offerings:
Ceramic Grinding Beads: Designed for high-energy milling and dispersing applications, these beads are essential in processes such as paint and coatings production. They are available in various compositions, including fused zirconium silicate and cerium or yttria-stabilized zirconia, with densities ranging from 1.65 to 3.8 kg/liter. 
Blasting and Peening Media: These ceramic media are utilized in surface treatment processes to enhance material properties and surface finishes. 
Zirconium Oxide Powders: Offered in a wide range of compositions, these powders cater to applications in sectors such as aeronautics, automotive, and electronics.

    This cutting-edge technology, created by the Navector Laboratory New Additive Manufacturing Research Institute, has overcome technical barriers previously set by the U.S. and Canada. The system offers low production costs, minimal doping, and high production capacity. It supports the stable mass production of active metals such as titanium and vanadium, as well as refractory metals like tungsten and molybdenum.

    Technical Parameters

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