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Additional resources for Advances in powder metallurgy: Properties, processing and applications
Advances in Powder Metallurgy and Particulate Materials, 2008, 2, 1–7. 9 Sundin S, Nordberg L-O, Cocco M and Walve R, Innovations in high performance gas-atomized PM steels. Proceedings of the 2008 World PM Congress, Session 51–1, Washington, MPIF, 2008. © Woodhead Publishing Limited, 2013 2 Forming metal powders by electrolysis G. Z. 19 Abstract: Fossil fuels will eventually be replaced by renewables. Currently, the most feasible and efficient way of utilising renewable energy is to convert it to electricity.
Luckily cyclones can capture down to 2–5 mm powders, so for HIP applications, the fines removed in filters before exhausting the gas to atmosphere or re-compressing, can be rejected or remelted, as they are <1% of the good product. Oxide films are generally less of a common problem. They should be eliminated by adequate purging of the system, careful sealing and control of the system pressure (slight positive pressure). It is not too difficult to use oxygen meters to monitor system oxygen levels before pouring, but they are of limited value during operation (except on recycled gas) as the metal will get into the system to sub-ppm levels and powder fines are very unpopular inside the sensors.
It is worth mentioning that direct electrochemical reduction of a solid compound attached to a cathode has been known for years, for example AgCl to Ag in the commonly used reference electrode, and PbSO4 to Pb in the wellknown lead acid battery. However, before proposal of the FFC Cambridge process, no previous work had succeeded to utilise this electrochemistry © Woodhead Publishing Limited, 2013 24 Advances in powder metallurgy for extraction of metals, particularly reactive metals and semi-metals like titanium and silicon.