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Meeting Materials Science & Technology 2016
Symposium Additive Manufacturing of Metals: Microstructure, Material Properties, and Product Performance
Organizer(s) Andrzej L. Wojcieszynski, ATI Powder Metals
Ulf R Ackelid, Freemelt AB
Sudarsanam S. Babu, The University of Tennessee, Knoxville
Ola L. A. Harryson, North Carolina State University
Ian D. Harris, EWI
Rodney R. Boyer, RBBTi Consulting
Scope Additive Manufacturing offers unique manufacturing capabilities, which cannot be attained with any other conventional manufacturing technologies. Its capabilities to produce the net shape parts with complex shapes and inside geometries surpass capabilities of casting, machining or injection molding. As a relatively new technology it continues to attract attention of professional communities including research, design, and process engineers. The research funds, which became available during the recent years, besides providing more visibility to this technology, also resulted in an extensive effort to develop a better understanding of the process capabilities, raw material requirements, and their effects on product properties characteristics. More research needs to be done before a full understanding of the capabilities of these processes is developed. This symposium is a continuation of the symposium held at MS&T’15. The main purpose of this symposium is to provide a forum for presenting the results of work related to the investigation of the effects of additive manufacturing process parameters on the microstructure, mechanical properties, and performance of products made from metallic alloys.
Abstracts Due 03/31/2016
Proceedings Plan Definite: MS&T all conference proceedings CD

A Composable Simulation Framework for Microstructure and Mechanical Properties Prediction for Metallic Additive Manufacturing Processes
A Partial Solution to Modeling the Anisotropic Material Properties of Fused Deposition Modeling ABS - Part 1 of 2
Additive Manufacturing of Metals: Differing Microstructures with Varying Builds
Additive Manufacturing of Stainless Steel: Processing, Microstructure, and Material Properties
Advanced Characterization of Additively Manufactured Materials Including Synchrotron–based 3D X-rays
Analysis of Residual Stress Formation in Additive Manufacturing of Ti-6Al-4V
Anisotropic Spall Strength in Additively Manufactured Ti-6Al-4V
Anisotropic Thermal Expansion Behavior of Ti-6Al-4V Components Fabricated by Lased Based Directed Energy Deposition Additive Manufacturing
Application of Digital Thread to Additive Manufacturing Systems
Assessment of Residual Stress in Selective Laser Melted 17-4 PH Stainless Steel via Numerical Modeling and Neutron Diffraction
Carbide Formation in Additive Manufacturing of Single-crystal Superalloy René N5 Processed through Scanning Laser Epitaxy
Characterisation of Additive Manufactured Aluminum-based alloy Periodic Cellular Structures (PCS)
Characterization of MAR-M247 Fabricated by Electron Beam Melting
Characterization of Selective Laser Melted 304L
Comparison of the Processing Space for Laser-deposited Inconel 625 and 17-4 Stainless Steel
Computed Tomography as a Tool for the Inspection of Metallic Additively Manufactured Components: A Review
Constitutive Property and Modeling of Additive Manufactured Stainless Steels
Damage Development in Thin Walled Selective Laser Melted Structures
Defect Characterization in Powder Bed AM Aluminum
Defect Detection and Distribution Analysis for Metal Additive Manufacturing using micro CT: Opportunities and Challenges
DEM Modeling of Powder Spreading in the Powder Bed Fusion Process and Empirical Correlations
Design of an ODS-TiAl Alloy for Additive Manufacturing Technologies
Developing Fundamental Scaling Relationships for Size and Geometry in Directed Energy Deposition Processes
Development of a Diffusion Mobility Description and Its Implications for Additive Manufactured Titanium Alloys
Drop-weight Impact Properties of an Additively Manufactured Re-entrant Auxetic Cellular Structure: Geometrical and Material Effects
Effect of Heat Treatment on the Microstructure of MAR-M247 Fabricated through Scanning Laser Epitaxy
Effect of Hot Isostatic Pressing on Mechanical Properties and Dimensional Accuracy of Intentionally Porous Ti6Al4V Parts Made by Selective Laser Melting
Effect of Microstructure on the Creep Behavior of Inconel 718 Manufactured via Electron Beam Melting
Effect of Process Parameters on the Melt Pool Geometry and Evolution of Porosity in Selective Laser Melting of Alloy IN625
Effect of Travel Speed and Post Deposition Heat Treatments in Laser Wire Deposition of Thin Ti-6Al-4V Buildups: Microstructure Characterization
Effects of Nickel Superalloy Composition and Geometry in EBM on Microstructure
Effects of Powder Feedstock Quality on γ-TiAl Parts Fabricated via Electron Beam Melting
Establishing Post-build Heat Treatment for Age-hardened Additive-manufactured Alloys
Evaluating the Effect of Processing Parameter on Porosity in SLM Ti-6Al-4V via Synchrotron–based 3D X-ray Microtomography
Evaluation of Structure and Properties of 4340 Steel Produced by the DMLS Process
Fabricating and Characterizing Additively Manufactured Heat Exchanger Tubing
Fatigue Crack Initiation and Growth Behavior of EBM Ti-6Al-4V
Fe – Al Intermetallic Cellular Structures Produced by Laser Engineered Net Shaping (LENS)
Grain Refinement in Electron Beam Melt Fabricated Ti-6Al-4V via Hypoeutectic Boron Addition
High Density Monolithic Alloy Parts via Additive Manufacturing Using the Binder Jetting Process
ICME Approach to the Materials Challenges in Additive Manufacturing of Metals
Impact of Atomization and Processing Conditions on the Heat Treatment Response of Additively Manufactured 17-4 Stainless Steel
Impact of Fe content and Post Processing on Properties of Additively Manufactured Solid Solution Strengthened Nickel Based Alloys
Improved Parameters for Hot Isostatic Pressing of Ti-6Al-4V Additively Manufactured by Electron Beam Melting
Influence of Grain Structure on the Mechanical Properties of Electron Beam Melted Inconel 718
Influence of Powder Characteristics on the Structural Integrity of High Purity Tungsten Produced via Selective Laser Melting
Investigation of the Solidification Effects of Microstructures of Laser Melted Stainless Steel
Laser Additive Manufacturing Processing of a Mixture of Iron and Nickel Powders
Low-cost Spherical Ti Alloy Powders for Additive Manufacturing
Manufacturing of W-band Vacuum Electronic Devices with Electron Beam Melting
Materials Based Spatio-temporal Decoupling for the Prediction of Non-linear Thermomechanical Phenomenon in Metal Additive Manufacturing Processes
Mechanical Properties and Microstructural Evaluation of Direct Metal Laser Sintered Inconel 625
Mechanical Properties of Hastelloy X Fabricated by Electron Beam Melting
Mechanical Properties of IN738LC Processed by Direct Metal Laser Melting (DMLM)
Mechanical Properties of Selective Laser Melted Al-12Si Alloy
Microstructural and Surface Defects Found in Additive Manufactured Titanium Components
Microstructural Characterization of As-Manufactured and Heat Treated Electron Beam Melted Inconel 718
Microstructural Characterization of ExOne-printed and Liquid Phase Sintered Stainless Steel
Microstructural Evolution and Defect Control in 316L SS Components Fabricated via Laser Additive Manufacturing
Microstructure and Mechanical Properties of WC-FeCoNi Manufactured by Selective Laser Sintering
Microstructure Characterization and Monotonic Properties of Inconel 718 Manufactured Through Electron Beam Melting in the As-built and Post-processed States
Microstructure Control in Additive Manufacturing of Aluminum Alloys
Microstructure Evolution, Tensile Properties, and Fatigue Crack Growth Mechanisms in Ti-6Al-4V Fabricated by Electron Beam Melting
Microstructure Informatics Cloud Computing for Data Analytics of Titanium Additive Manufacturing
Microstructure of Additively Manufactured 304L and 316L Stainless Steel Materials and Powder Feedstock
Microstructure, Tensile Properties, and Fatigue Crack Growth Behavior in Inconel 718 Manufactured by Laser Engineered Net Shaping
Multiple Testing Techniques and Multiple Conclusions in AM Metals
NiCr-Alloy Powder Reuse and Testing Results in Additive Manufacturing
On the Effect of Metal Powder Recyclability for Build Quality and Process Optimization in SLM 3D Printing
On the Limitations of Volumetric Energy Density as a Key Parameter to Describe Selective Laser Melting of 316L Stainless Steel
On the Role of Microstructure on the Fatigue Performance of Additively Manufactured Components
Partitioning of Laser Energy during Directed Energy Deposition
Phase Field Modeling of Solidification Microstructure during Laser Sintering of Inconel 625
Post Processing of Electron Beam Fabricated Ti-6Al-4V via Hot Isostatic Pressing
Predictive Modeling of Grain Growth in Laser-based Additive Manufacturing of Austenitic Stainless Steel
Process-structure-property Relationships for Selective Laser Melted 17-4 PH Stainless Steel
Process-structure-property Relationships in 304L Stainless Steel Produced by Directed Energy Deposition: Experimental Characterization and Modeling
Properties of 316L Austenitic Stainless Steel Additively Manufactured Using Laser Metal Deposition Method
Relationship between Porosity Size and Fatigue Life Distributions of AlSi10Mg Parts Produced by Selective Laser Melting
Reliability Estimation of Additive Manufacturing Process Parameters Using Surrogate Modeling
Role of Composition on the Microstructure and Texture Evolution of Additively Manufactured Beta-Ti Alloys
Selective Laser Melting of Alloy IN625: Effect of Build orientation on Microstructures and Mechanical Properties
Simulating Metal Additive Manufacturing Microstructures with Kinetic Monte Carlo
Site Specific Texture Control In EBAM Process Using Numerical Modeling and Optimization Techniques Aided by High Performance Computing
Solidification Microstructure and Mechanical Properties Development due to Selective Laser Melting of AlSi10Mg Alloy
Spatial Control of AM Solidification Microstructure across Multiple Alloys and Processes
Structure / Property (Constitutive and Dynamic Strength / Damage) Characterization of Additively Manufactured (AM) 304L SS Produced Using Four Different AM Build Methods
Supersolidus Liquid Phase Sintering of Inconel 718
Surface Finish Effects on Tensile Properties of EBM Manufactured Ti6Al4V
Surface Texture and Microstructure of Overhanging Structures in Laser Powder Bed Fusion Additive Manufacturing
The Effect of Aging Treatment on Mechanical Properties of Powder-bed Binder-jet Printed Alloy 625 Nickel Superalloy Parts
The Effect of Beam Spot Size on Melt Pool Geometry in Direct Metal Additive Manufacturing Processes
The Effect of Processing Parameters on Surface Finish and Mechanical Behavior Of Additively Manufactured Metals
The Influence of Post-build Microstructure on the Electrochemical Behavior of Additively Manufactured 17-4 Stainless Steel
The Influence of Powder Reuse on the Properties of Nickel Super-alloy 718 in Laser Powder Bed Additive Manufacturing
The Influence of Processing Parameters on the Quality of WC-20 wt%(FeCoCrNi) Using Selective Laser Sintering
The Role of Melting Pool Boundary in the Determination of Mechanical Property of Al Alloys Made by Selective Laser Melting
Thermophysical Property Measurements of Ti-based liquid Metal Alloys by Electrostatic Levitation
Ti6Al4V Selective Laser Melted : Impact of Powder Bed Characteristics on Geometrical Stability
Understanding the Impact of Hot Isostatic Pressing (HIP) Using Computed Tomography (CT) on Ti-6Al-4V Wall Structures Fabricated by Laser Based Directed Energy Deposition
Understanding the Microstructure Evolution of Additively Manufactured Ti-base Alloys, Composition and Processing Windows

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