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          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)
          Metal Powders for Additive Manufacturing(AM)

          Metal Powders for Additive Manufacturing(AM)

          Vacuum gas atomization and plasma spheroidization technology are introduced to produce spherical powder such as Fe-based, Ni-based, Co-based, W, Mo, Ti and Ti alloy for AM.Also AM service chain can be provided from spherical metal powder preparation, AM verification, hot isostatic pressing and densification.

          Features

          We have rich experience in additive manufacturing, and can provide customized service on the gas atomized and plasma spheroidized metal powder. The metal powders have the characteristics of low cost, low oxygen content, less satellite powder, high sphericity and high fluidity.

          Typical Applications

          The metal powder can be applied for Direct Metal Deposition(DMD), Direct Metal Laser Sintering(DMLS), Selective Laser Sintering(SLS) and Selective Electron Beam Melting(SEBM), etc.

          Component of CoCrMo

          Element

          Co

          Cr

          Mo

          W

          S

          Fe

          Mn

          Content

          61.8 – 65.8

          23.7 –25.7

          4.6 – 5.6

          4.9 – 5.9

          0.8 – 1.2

          max. 0.50

          max. 0.10

          Properties of CoCrMo Powder

          Oxygen Content

          ppm

          Apparent Density

          g/cm3

          Particle Size

          D50/um

          182

          4.33

          35.728

          Properties After Heat Treatment

           

          Tensile Strength,σb,?MPa

          Yield Strength,σ0.2,MPa

          Elongation,%

          1

          1170

          876

          22.5

          2

          1159

          855

          22.4

           

          Orthopaedic Implants of CoCr-Alloy by AM?

          ?

          Technical Specifications

          Powder Material System Typical Grade Powder Particle Size, (D10-D90) μm Preparation Process
          Iron-based alloy 316,316L,17-4PH,15-5PH,18Ni300 15-53, Aerosolization
          10-45,
          75-150,
          customizable
          F 625,718,K series 15-53, Aerosolization
          10-45,
          75-150,
          customizable
          Cobalt-based alloy CoCrMo,CoCrWMo 15-53, Aerosolization
          10-45,
          75-150,
          customizable
          Titanium and titanium alloys Pure Ti, TC4, TC18, TC21, TA15, TA18 15-53, Hydrodehydrogenation + plasma spheroidization
          10-45,
          75-150,
          customizable
          Refractory metals such as tungsten W,Mo,Ta,Nb 15-53, Reduction of fragmentation + plasma spheroidization
          10-45,
          Alloy Powder Typical Alloy Particle Diameter,(D10-D90),μm Fabrication Methods
          Fe-base Alloy 316,316L,17-4PH,15-5PH,18Ni300 15-53, Gas Atomization
          10-45,
          75-150,
          Customed
          Ni-base alloy 625,718,K-series 15-53, Gas Atomization
          10-45,
          75-150,
          customization
          Co-base alloy CoCrMo,CoCrWMo 15-53, Gas Atomization
          10-45,
          75-150,
          customization
          Ti & Ti alloy pure-Ti,TC4,TC18,TC21,TA15,TA18 15-53, HDH+Plasma spheroidization
          10-45,
          75-150,
          customization
          W and refractory metal W,Mo,Ta,Nb 15-53, Reduction and fragmentation+Plasma spheroidization
          10-45,

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