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PyroGenesis Inc T.PYR

Alternate Symbol(s):  PYRGF

PyroGenesis Inc., formerly PyroGenesis Canada Inc., is a Canada-based high-tech company. The Company is engaged in the design, development, manufacture and commercialization of advanced plasma processes and sustainable solutions which reduce greenhouse gases (GHG). The Company has created proprietary, patented and advanced plasma technologies that are used in four markets: iron ore palletization, aluminum, waste management, and additive manufacturing. It provides engineering and manufacturing expertise, contract research, as well as turnkey process equipment packages to the defense, metallurgical, mining, additive manufacturing (including 3D printing), oil and gas, and environmental industries. Its products and services include plasma atomized metal powders, aluminum and zinc dross recovery, waste management, plasma torches, and innovation/custom process development. It offers PUREVAP, which is a high purity metallurgical grade silicon and solar grade silicon from quartz.


TSX:PYR - Post by User

Comment by Thinkbigsti69on Jun 08, 2024 2:28pm
90 Views
Post# 36079379

RE:RE:RE:PyroGenesis featured in PM Review

RE:RE:RE:PyroGenesis featured in PM Review
BCONTVentures wrote: Great comment from @Namazon:

@Namazon It's a very slick addition to the plasma atomization process they originally invented. No wonder they call it NexGen. The use of an induction coil to essentially melt the titanium (or whatever metal) just prior to being blasted by the plasma into micron spheres. On that patent link that @cargo posted... look at number "14" on the drawing... this is the induction coil... essentially one of these: Preheating the titanium means you can run more material in less time compared to a cold feed. I recall Peter saying that the higher the rate of throughput the cheaper it is to produce. Electromagnetic induction heats an electrically conductive object (as in the titanium metal). Eddy currents are generated within the titanium and results in resistive heating. The induction coil can heat the metal to the melting point. Most are made of water-cooled copper rings. They've essentially made an mini induction furnaces add-on that can be used in a vacuum or inert atmosphere. This is cleaner and prevents oxidation. A high frequency magnetic field can actually stir the metal, ensuring consistent alloy distribution. It sounds like a brilliant design. GO PYR GO!

BCONTVentures wrote: Worth a repost, an informative article on PyroGenesis' NexGen Plasma Atomization System.  Note that PYR's NexGen system utilizes a 2 wire feedstock for the production of 3D Powders (other systems only use a 1 wire feedstock).  This great increases PYR's NexGen output of powders.

“With full commercialization achieved, and now with the U.S. patent confirmed for our technology, we look forward with great optimism regarding our future, with an ever-widening range of metal powder offerings becoming available to the additive manufacturing industry.”

BCONTVentures wrote: PyroGenesis featured featured in PM Review: For Metal Powders, Powder Metallurgy and Beyond:

https://www.pm-review.com/pyrogenesis-granted-us-patent-for-nexgen-powder/

PyroGenesis granted US patent for NexGen powder

PyroGenesis Canada Inc., Montreal, Quebec, Canada, has announced that the United States Patent and Trademark Office (USPTO) has issued a new US Patent No. US 11839918 encompassing the company’s NexGen plasma atomisation powder.

This US Patent – ‘Method and Apparatus for Producing High Purity Spherical Metallic Powders at High Production Rates From One or Two Wires’ – describes the company’s NexGen plasma atomisation technology for producing metal powder for use in Additive Manufacturing. The patent describes the features of the NexGen machine, which can potentially lead to higher and more efficient production rates. One such feature is the use of a two-wire simultaneous feedstock approach where the wires are electrically charged before reaching the plasma atomisation step.
 

Pierre Carabin, PyroGenesis’ Chief Technology Officer and Chief Strategist, and the co-inventor of the technology, shared, “The NexGen process is a significant departure from conventional plasma atomisation, as the improved efficiency from NexGen not only targets higher production rates, but also narrower particle size distribution for more uniformity and consistency, and an ability to tailor particle size distribution (PSD) to customer requirements.

“For PyroGenesis, that means producing more powder in a single system and with only a single plasma torch – in accordance with our commodity security and optimisation business strategy. For our customers, that means they receive the finest, most spherically-consistent, and densest powders from typical plasma atomisation, but with the added benefits of buying from a North American-based source that offers higher yield and less waste of a recognised critical mineral, while also being more energy efficient – helping them to reduce their carbon footprint and meet their Scope 3 emissions targets,” continued Carabin.

Plasma atomisation, which involves feeding a single wire through a plasma torch or using three plasma torches to aim at a centrally-positioned wire, has a significant drawback in terms of production rate in comparison to water and gas atomisation, due to the fact that plasma atomisation is a very energetically inefficient process.

To combat this, PyroGenesis Additive’s NextGen machine feeds two separate spools of metal wire, such as titanium. These wires are first electrically charged, which creates an electrical arc that melts them. The melted wire is then atomised into powder particles using a supersonic plasma stream from a plasma torch. This results in a more efficient atomisation of the metal, increasing production output.

“Plasma atomisation is considered the gold standard for the production of Additive Manufacturing powder,” stated Massimo Dattilo, Vice President of PyroGenesis Additive. “PyroGenesis not only invented the process, but coined the name, which is now widely used in the industry. Because of our dedication to continuous improvement, when we decided to re-enter the market, we did so with a mandate to advance plasma atomisation to the next level through a redesigned system we named NexGen. The confirmation of this US patent for NexGen is a key validation of our approach and another major box checked in our market re-entry progress.”

The company has patents pending in Canada and other global jurisdictions for the same NexGen plasma atomisation process.

“The substantially improved efficiency of NexGen, which has shifted the particle size distribution of our production runs, means the larger average amount of finer cut powder we can produce per run also includes fine powders in the 5–20μm range suitable for use in Binder Jetting and Metal Injection Moulding (MIM). We see MIM – in addition to the fine powders we can offer for laser bed applications – as a key market ahead, as more companies especially in consumer electronics continue to move from stainless steel to titanium to achieve weight and corrosion reduction,” added Dattilo.

After several years of R&D, the company recently announced full commercialisation and whole entrance into the titanium metal powders marketplace with its first by-the-tonne commercial order, and the company’s journey to create NextGen was the topic of a recent a cover story of Powder Metallurgy Review.

“With a goal to produce the highest quality metal powders in the Additive Manufacturing industry, PyroGenesis Additive has taken a cautious, methodical approach over the past few years as we designed, then readied, our new NexGen plasma atomisation process,” said P Peter Pascali, president and CEO PyroGenesis Canada Inc. “With full commercialisation achieved, and now with the US patent confirmed for our technology, we look forward with great optimism regarding our future, with an ever-widening range of metal powder offerings becoming available to the Additive Manufacturing industry.”

The company has developed high-quality titanium metal powders as a part of its three-tiered solution ecosystem, which is aligned with economic drivers that are key to global heavy industry. The metal powders fall under the company’s Commodity Security & Optimization tier, where the recovery of viable metals and the optimisation of production to increase output, help maximise raw materials and improve the availability of critical minerals. The Canadian government, and many other governments worldwide, have identified titanium as a critical mineral.

www.pyrogenesis.com





 NexGen
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