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Message: Pyrogenesis Titanium grade capabilities

Apologies to the board for the double submit. I often forget to select the question option.

MagBeach2 thanks for prompting this question.. I've been meaning to ask it for some time.

Forgive me in advance if the answer is proprietary.. 
Peter, of the grades listed below, Pyrogenesis is able to do, ("Currently, PyroGenesis’ standard powder offering covers titanium pure CPTi (grade 1), Ti 6Al-4V (grades 5 and 23), and Inconel"),

Is the company limited by the plasma process to manufacure the other grades in that list below ? (CPTi (Grade 2) Beta 21S and TA15)

https://3dprintingindustry.com/news/pyrogenesis-ships-first-batch-of-additive-manufacturing-metal-powder-to-government-body-150483/

Titaniums for Additive Manufacturing

  • Titanium 6Al-4V, grade 5 is the most commonly used in titanium alloy in additive manufacturing and is ideal for prototypes and functional parts in the aerospace and automotive fields and for military applications. It is also an excellent material for the manufacture of parts with complex geometry, precisions or production tooling.
  • Titanium 6Al-4V, grade 23 is a biocompatible alloy is commonly used for medical implants and prostheses.
  • Titanium Beta 21S exhibits a higher strength than conventional titanium alloys such as Ti-6Al-4V and has superior oxidation resistance and creep resistance compared to conventional titanium alloys such as Ti-15V-3Cr. Grade 21 Titanium has one of the lowest hydrogen uptake efficiency levels of any titanium alloy. It an ideal candidate for orthopedic implants and aerospace engine applications. Beta titanium is widely use in the orthodontics.
  • Cp-Ti (Pure Titanium), grade 1, 2 are extensively used in the medical field for a wide range of applications, due to the biocompatibility of titanium with the human body.
  • TA15 is a near-alpha titanium-alloy with additives of aluminum and zirconium. The high specific strength of components made of TA15 combined with their high load-bearing capacity and temperature resistance enable them to be used for heavy-duty components in aircraft and engine construction.
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