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Meeting 2025 TMS Annual Meeting & Exhibition
Symposium A Career in Powder Processing and Additive Manufacturing: A MPMD Symposium Honoring David Bourell
Sponsorship TMS Materials Processing and Manufacturing Division
TMS: Additive Manufacturing Committee
TMS: Powder Materials Committee
Organizer(s) Paul D. Prichard, Kennametal Inc.
Allison M. Beese, Pennsylvania State University
Iver E. Anderson, Iowa State University Ames Laboratory
Scope This symposium will honor the contributions of Professor David Bourell in the many domains of materials science, additive manufacturing, standards development, and education that he influenced through his illustrious career. These include, but are not limited to:

- Densification of powders by sintering and infiltration
- Laser powder bed fusion
- Novel materials and microstructures developed by powder and additive processes
-Technology evolution of additive manufacturing
- Education in additive manufacturing and powder metals
- Accreditation and standards role in technology development
- Sustainability in powder materials and additive manufacturing

The scope of these presentations should reflect the contributions of Professor Bourell as the basis for our technical understanding and ongoing developments in the science, engineering, education, and manufacturing communities.

Abstracts Due 07/15/2024
Proceedings Plan Planned:
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

Comparison of Mechanical Properties Between Laser Powder Bed Fusion and Wrought 17-4 PH
Cr and Al diffusion coatings for improved corrosion resistance of AM surfaces
Dual Concentric Ring Atomization Gas Die to Improve Gas Atomization Efficiency for SFF/AM Metal Powder Feedstocks
Evaluation of Green State Anisotropy in Parts Produced by Binder Jetting, Via Machine Learning Enhanced Discrete Element Modelling
Fabrication of open porous magnesium scaffold using rapid tooling method for orthopedic applications
Failure Phenomena of Additively Manufactured Ni-base Superalloys at Various Temperatures under Static and Cyclic Loadings
From Binder Jet Printing to Sintering of Fully-Dense, Controlled-Irregular Copper Powder
In-Situ Process Monitoring and Control in Laser Powder Bed Fusion
Limits of dispersoid size and number density in ODS alloys fabricated with laser powder bed fusion
Liquid-induced healing of cracks in nickel-based superalloy fabricated by laser powder bed fusion
Moving metal AM into mainstream manufacturing
Next Generation L-PBF Technologies and the Effect on Multi-Material Processing
Research and Application of Shougang's Thick Material Layer Sintering Technology
Temperature Dependent Experimental and Analytical Evaluation of Thermal Conductivity for Metallic Powder for Additive Manufacturing


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