EPMA Powder Metallurgy Summer School

July 20, 2020

Dates
July 20, 2020 to July 24, 2020

Location
University of Castilla-La Mancha: Ciudad Real Campus, Ciudad Real, Spain

Event website
summerschool.epma.com/


The EPMA PM Summer Schools have been designed to offer participants from all parts of Europe an advanced teaching of PM’s advantages and limitations by some of the leading academic and industrial personnel in Europe.  It is also a rare opportunity to stimulate direct technical discussions by young scientists and engineers who are interested in broadening their knowledge through interaction with senior figures in the PM industry.

Powder Metallurgy (PM) is the generic name for a series of related processes where powders are compacted into components of the desired shape and then the compacts are strengthened by sintering at high temperature in excess of 1100C. PM can utilise a range of materials including steels, non-ferrous metals, friction and anti-friction materials, high porosity materials and filters, hard materials and cemented carbides, magnets and materials for electronic applications.

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Download the latest issue of PM Review

Our latest issue is now available to download in PDF format, free of charge.

As well as an extensive Powder Metallurgy industry news section, this 96-page issue includes the following exclusive articles and reports:

  • Teardown showcases applications for PM in hybrid electric vehicle market
  • Characterising powders for Cold Isostatic Pressing applications
  • JPMA Awards 2019: Showcasing innovations in PM for high volume applications
  • Euro PM2019: Manipulating the sintered microstructures of hard materials
  • More information

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Powder Metallurgy:The original net-shape production process

Powder Metallurgy components are relied upon by a wide variety of manufacturing industries, from automotive to power tools, household appliances, chemical engineering, filtration and more.

The main reason for the technology’s success is its cost-effectiveness at producing high volumes of net-shape components, combined with its ability to allow the manufacture of products that, because of the production processes, simply cannot be manufactured by other methods.

To discover more about how the technology has revolutionised component production, browse our Introduction to Powder Metallurgy.

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