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Meeting 2021 Annual International Solid Freeform Fabrication Symposium (SFF Symp 2021)
Symposium Poster Session
Presentation Title Investigating the Effect of Heat Transfer on the Homogenity in Microstructure and Properties of Inconel 718 Alloy Fabricated by Laser Powder Bed Fusion Technique
Author(s) Behzad Farhang, Bharath Bhushan Ravichander, Aditya Ganesh-Ram, Samarth Ramachandra, Manjunath Hanumantha, Whitney Hall, Ann Dinh, Amirhesam Amerinatanzi, Narges Shayesteh Moghaddam
On-Site Speaker (Planned) Behzad Farhang
Abstract Scope Laser powder bed fusion (LPBF) of metallic components is associated with microstructure and properties inhomogeneity in the fabricated components. In a recent work by the authors, a novel technique of considering a border surrounding the main part during the LPBF fabrication is proposed to address the issue of microstructure inconsistency across the cross section of LPBF-fabricated parts. This study, on the other hand, aims to investigate the effect of such border on the microstructure homogeneity along the build direction of LPBF-fabricated parts. For this purpose, a cubic sample surrounded by a cubic border was fabricated to control the rate of heat transfer and then improve the microstructure properties across the cross section. Also, a sample with identical dimensions and the same process parameters was printed without border as a reference to be compared. To investigate the variation of the properties along the build direction, microstructure and hardness results were compared between areas near and away the substrate for both samples. For the area away from the substrate, in both samples, a deeper pool, less surface porosity and higher Vickers hardness was observed compared to the area near the substrate. It was found out that, regardless of the focused area, the sample fabricated with border possesses deeper pools, higher level of density as well as higher hardness value. However, in term of homogeneity along the build direction, no significant improvement was observed for the sample fabricated with the cubic border.
Proceedings Inclusion? Definite: Post-meeting proceedings

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

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A Deep Learning Approach to Defect Detection in Additive Manufacturing of Titanium Alloys
A Review of Wire-fed AM Process Monitoring and Data Analytics
Additive Manufacturing of Cu-Ni-Tool Steel Multi-metallic Structures
Additive Manufacturing of Cu on 316L Stainless Steel via Inconel 718 Intermediate Layers
Additive Manufacturing of Two-phase Lightweight, Stiff and High Damping Carbon Fiber Reinforced Polymer Microlattices
Aerosol JetŪ Printing on Fiber-based Paper Substrates for Smart-packaging
Anomaly Segmentation in Thermal Tomography Process Monitoring for Laser Powder Bed Fusion Using Texture Analysis
Closed-Loop Control of Meltpool Temperature in Directed Energy Deposition
Controlling Powder Bed Cohesion in Binder Jetting (BJ)
Cost Analysis of Metal Additive Manufacturing via FDM Desktop 3D Printers
Detecting Hidden Process Anomalies Causing Defects Using In-situ Process Monitoring
Detecting Layerwise Build Defects Using Low-cost Imaging and Machine Learning
Directed Energy Deposition of Stellite 21 Hardfacing Coatings
Effect of Build Parameters on the Material Properties of Printed Parts Produced by Multi-jet Fusion
Effect of Impact Angle on Deposition of LiNbO3 films by Micro-cold Spray
Effects of Centrifugal Disc Finishing for Surface Improvements in Additively Manufactured Gears
Enabling Deposition of Removable Support Structures in Large-format Material Extrusion
Enabling Direct Ink Write Edible 3D Printing of Food Purees with Cellulose Nanocrystals
Evaluating the Extrudability of Common Feedstocks for Fused Filament Fabrication Systems
Exploring Variability in Melt Pool Attributes with High-speed Imaging
Impact of Porosity Type on Microstructure and Mechanical Properties in Selectively Laser Melted IN718 Lattice Structures
Influence of Process Conditions on the Thermal Conductivity of Selective Laser Melted AlSi10Mg
Inspection and Detection of Porosity in Additively Manufactured Parts with Different Geometries
Investigating the Effect of Heat Transfer on the Homogenity in Microstructure and Properties of Inconel 718 Alloy Fabricated by Laser Powder Bed Fusion Technique
Investigation on the Properties of Reinforced IN718 Structures Fabricated Using Laser Powder Bed Fusion
Large Area Projection Sintering of Chocolate
Laser Powder-bed-fusion of Tungsten Materials for Fusion Energy Applications
Lattice Infill Pattern Design for Increased Green Part Strength and Sintered Density in Metal Binder Jetting
Microstructural and Mechanical Characterization of Laser Powder Bed Fusion of IN718 Overhangs
On Ultrasound Powder Stream Focusing and Applications to Powder-fed Laser Directed Energy Deposition
Origami-inspired Deployable Structures Using Fused Deposition Modeling with Embedded Fabric
Processing of In Situ Titanium Metal Matrix Composites via Directed Energy Deposition and Selective Laser Melting
Quantification of the Effects of Deposition on Spatter Formation and Dynamics in Laser Powder Bed Fusion via Dynamic X-ray Radiography
Rheological Scaling and Modulation to Improve the Extrudability of Metal Filament by Fused Filament Fabrication
Scan-by-Scan Part-Scale Thermal Modelling for Defect Prediction in Metal Additive Manufacturing
Study of Spatter Formation and Effect of Anti-spatter Liquid in Laser Powder Bed Fusion Processed Ti-6Al-4V Samples
Tensile and Fatigue Characteristics of Miniature AlSi10Mg Specimens Fabricated Via Powder Bed Fusion
The Effect of Processing Parameters on Melt Pool Geometry and Surface Formation in Laser Powder Bed Fusion
Thermal Modeling in Additive Manufacturing Using Graph Theory: Validation with Laser Powder Bed Fusion for a Large Impeller Part
Towards the Residual Stress Prediction in Wire Arc Additive Manufactured Parts Using a Finite Element Thermomechanical Model
Using Acoustic Sensors to Review Sample Integrity During Selective Laser Flash Sintering of Ceramics
Variable Hysteresis of Pantographic Lattices
Voxel-based Damage Reconstruction and Its Application for Component Repair Using Additive Manufacturing

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