PMTi2019: Powder Metallurgy and Additive Manufacturing of Titanium

September 24, 2019

Dates
September 24, 2019 to September 27, 2019

Location
University of Utah, Salt Lake City, United States

Event website
www.mpif.org/Events/PMTi2019Conference.aspx


PMTi2019: Powder Metallurgy and Additive Manufacturing of Titanium

 

Global experts on powder metallurgy and additive manufacturing processing of titanium and titanium alloys will gather for academic exchange and technology transfer in Salt Lake City at the University of Utah for PMTi2019. After four successful conferences held in Australia, New Zealand, Germany, and China, PMTi is coming to the United States for the first time.

Topics Include

  • Powder Production
  • Compaction and shaping
  • Metal injection molding (MIM)
  • Additive manufacturing
  • Sintering
  • Mechanical properties
  • Microstructure vs property relationships
  • PM Ti alloys including TiAl
  • PM Bio Ti materials
  • Modeling
  • Applications

 

Latest Industry News

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 108-page issue includes the following exclusive articles and reports:

  • Fukuda Metal Foil and Powder Co., Ltd: Three hundred years of metal powder production in Japan
  • Strategies and initiatives for cost-affordable PM Ti alloys: Compositions and manufacturing
  • Nichols Portland: The world’s first manufacturer of gerotors continues to innovate
  • MPIF’s 2019 PM Design Excellence Award winning parts highlight wide variety of applications
  • APMA 2019: India welcomes the fifth International Conference on Powder Metallurgy in Asia
  • 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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