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Meeting 2014 TMS Annual Meeting & Exhibition
Symposium Solidification in Additive Manufacturing
Sponsorship TMS Materials Processing and Manufacturing Division
TMS: Solidification Committee
TMS/ASM: Phase Transformations Committee
Organizer(s) Jyoti Mazumder, University of Michigan
Rainer Hebert, University of Connecticut
James W Sears, Carpenter Technology Coporporation
Iver Anderson, Ames Laboratory
Alan A. Luo, The Ohio State University
Scope Role of solidification on the structure, properties and synthesis rate of components fabricated from metal and alloy powders by additive manufacturing. It will also include how micro and meso scale solidification processing and modifications in the powder feedstock materials and melting/solidification parameters can be utilized to design materials and alloys with specified properties .
Abstracts Due 07/15/2013
Proceedings Plan Planned: A print-only volume
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

A Comparison of the Behavior of a CoCrMo Alloy Solidified by Direct Metal Laser Melting (DMLM) and Electron Beam Melting (EBM) Additive Manufacturing Techniques
A Coupled Solidification-microstructural Model of Single-crystal Alloy CMSX-4 Processed through Scanning Laser Epitaxy for Turbine Engine Hot-section Component Repair
Characterization of Functional Gradient Materials Fabricated Using Additive Manufacturing
Effect of Laser Scanning Pattern and Build Direction in Additive Manufacturing on Anisotropy, Porosity and Residual Stress
Microstructure and Texture Evolution in Laser Deposited FCC Alloys
Microstructure of Titanium Alloy Prepared by Selective Laser Melting in Vacuum
Microstructure, Mechanical Properties and the Influence of Heat Treatment (T6) of AlSi10Mg Alloy Fabricated by Selective Laser Melting
P-V Process Mapping of Ti-6Al-4V Microstructure across Two Additive Manufacturing Processes
Process Mapping of Melt Pool Geometry and Microstructure for Direct Metal Additive Manufacturing
Processing Considerations, Microstructures, and Properties of Ti-6Al-4V Fabricated by Laser Engineered Net Shaping
Reduction in Mechanical Anisotropy through High Temperature Heat Treatment of Hastelloy X Processed by Selective Laser Melting (SLM)
Selective Laser Sintering of Modified 431D Al Alloy
Solidification Characteristics and Microstructural Features of Titanium Alloys Fabricated by Electron Beam Selective Melting
Texture Development in Titanium Additive Manufactured Components
Using Combined EBSD-EDS to Characterize Solidification Microstructures in Additive Manufactured Materials


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