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Meeting Materials Science & Technology 2020
Symposium Additive Manufacturing: Microstructure and Material Properties of Titanium-based Materials
Presentation Title Understanding Microstructure and Mechanical Property Variations in Lase-based Powder Bed Fusion of Ti-6Al-4V and their Heat Treatment Design
Author(s) Ebrahim Asadi, Behzad Fotovvati, Seyed Alireza Etesami
On-Site Speaker (Planned) Ebrahim Asadi
Abstract Scope This study presents a comprehensive investigation of microstructure and mechanical performance of laser-bases powder bed fusion (LPBF) of Ti-6Al-4V alloy (as-built) and several post-LPBF heat treatment cycles. First, the results of mechanical tensile testing and their associated microstructure, microhardness, porosity, and elemental analysis for LPBF of Ti-6Al-4V sheets are presented. The effect of thickness, orientation, distance from free edges, and height and their correlation to material microstructure (e.g. β nanoparticle volume fraction, martensitic α’ decomposition to α+β and α” orthorhombic structure) and thermal history as dictated by LPBF process parameters are investigate. For the second portion of the presentation, several heat treatments steps and cycles and their influence on mechanical properties and microstructure of Ti-6Al-4V alloys will be presented. These studies are utilized to design a heat treatment cycle to achieve α+α’ microstructure with improved elongation and mechanical strength combination needed for many applications in industries such as biodevice industry.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Correlating Processing, Structure and Properties for Additively Manufactured Ti-6Al-4V
Dynamic Transformations In AM Ti6Al4V Alloy
Environmental Degradation of AM-fabricated Ti6Al4V Alloy
Fracture of additively manufactured Ti-6Al-4V under multiaxial loading: experiments and modeling
Influence of Different Post-printing Treatments on the In Vitro Biocompatibility of 3D Generated Titanium Plates
Mechanical properties, fracture surface and microstructure of additively manufactured Ti6Al4V
Microstructural Modeling of β to α Transformation Morphologies in Multi-layered Laser Wire Additively Manufactured Ti-6Al-4V Parts
Multiscale Mechanical Studies of Dual-phase Titanium Alloys Made by Additive Manufacturing
Study of Effects from Post-processing on the Fatigue Performances of Laser Powder Bed Fusion Built Parts Using Hydride-dehydride Ti-6Al-4V Powders
Study the Effect of Thermal Gradients on the Microstructure and Mechanical Properties of Electron Beam Melting Ti-6Al-4V Builds
Understanding Microstructure and Mechanical Property Variations in Lase-based Powder Bed Fusion of Ti-6Al-4V and their Heat Treatment Design

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