ProgramMaster Logo
Conference Tools for 2024 TMS Annual Meeting & Exhibition
Login
Register as a New User
Help
Submit An Abstract
Propose A Symposium
Presenter/Author Tools
Organizer/Editor Tools
About this Abstract
Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Additive Manufacturing and Innovative Powder/Wire Processing of Multifunctional Materials
Presentation Title Influence of Energy Density on the Microstructure, and Growth Orientation of Additively Manufactured Fe-6.5wt%Si Transformer Steels
Author(s) SaiSree M. Varahabhatla, Abhishek Sharma, Sameehan Joshi, Srinivas Aditya Mantri, Varun Chaudhary, Raju Ramanujan, Narendra Dahotre, Raj Banerjee
On-Site Speaker (Planned) SaiSree M. Varahabhatla
Abstract Scope In recent years, significant effort has been dedicated to the development of high-silicon Fe-6.5wt%Si electric steels using casting and forging methods due to their outstanding magnetic properties. The challenges encountered during conventional manufacturing can be attributed to the presence of ordered phases such as B2-FeSi and D03-Fe3Si, which contribute to the brittleness of these steels. In this study, we investigated the feasibility of producing Fe-6.5wt%Si high-silicon electric steels using additive manufacturing (AM), specifically Direct Energy Deposition (DED) and Laser Powder Bed Fusion (LPBF). Both, DED and LPBF processed Fe-6.5wt%Si steels exhibited excellent magnetic properties, including low coercivity and high saturation magnetization. The DED processed Fe-6.5wt%Si exhibited a strong <111> texture parallel to the build direction. Whereas, the LPBF processed Fe-6.5wt%Si showed a <001> texture parallel to the build direction. The presence of B2 and D03 ordered phases is observed in both the DED and LPBF processed Fe-6.5wt%Si.
Proceedings Inclusion? Planned:
Keywords Additive Manufacturing, Magnetic Materials, Characterization

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Data-driven Approach for Rapid Process Parameter Optimization in Laser Powder Bed Fusion of Fe-Si Soft Magnetic Alloys
Additive Manufacturing of SiC Coated Printed Tungsten and Inconel 625
Additive Manufacturing of Soft Magnetoactive Composites
Advanced Thermal Analysis to Study the Degree of Solid-State Thermoelastic Phase Transformation of Ti-rich Laser Directed Energy Deposition (LDED)-based NiTi Alloys
An ICME Framework for Tailoring the Transformation Characteristics of AM NiTi(x)-based Shape Memory Alloys
Binder Jet Printed and Sintered Porous Ni-Mn-Ga Magnetic Shape-Memory Alloys
Binder Jetting of Advanced Thermoelectric Materials
Core-shell Powders as New Feedstock Material for APPD Additive Manufacturing Technique
Effects of Gas Atomization Reaction Synthesis (GARS) Powder Size and Microstructure on Laser Powder Bed Fusion Consolidated ODS Steel
Effects of Various Blending Technologies of Hydroxyapatite and Mg alloy WE43 Mixed Powder on Additive Manufacturing Process
Enhanced Interfacial Properties in Multi-material Printing of Aluminum and Titanium Alloys Through the Combination of Powders and Foils
F-1: Binder Jetting of Non-spherical Copper Powder
F-2: Comparison of Flowability and Characteristics of Inconel 625, Ti-6Al-4V, and SUS316L Powders for the DED Process
F-3: Effect of Sliding Conditions on Wear Behavior of Directed Energy Deposited CoCrFeMnNi High Entropy Alloy
F-4: Geometric Characteristics in Polycaprolactone Scaffolds Fabricated by Melt Extrusion Additive Manufacturing
F-5: Iron-based Shape Memory Alloy Coatings for Forging Dies
F-6: Revisiting the Effect of Alloying Elements on Crystal Structure, Microstructure, and Magnetic Properties Samarium Cobalt Supermagnets
F-7: Welding and Additive Manufacturing Wire Feedstocks Derived from Recycled Aluminum
Fabrication of Functional Cu-CNT Composite Material using Laser Powder Bed Fusion Process For Medical and Biomedical Applications
Fabrication of Highly Textured Galfenol Using Laser Powder Bed Fusion
Functional and Mechanical Behavior of Ultrathin, Porous NiTi Fabricated via Laser Powder Bed Fusion
Fused Filament Fabrication (FFF) Additive Manufacturing of Bronze-based Materials
Hard Magnetic 3D Objects fabricated by Extrusion- and Stereolithography-based Additive Manufacturing
High Magnetization FeCo Alloy Nanoparticles for the Fabrication of Intelligent Magnetorheological Fluids
Influence of Energy Density on the Microstructure, and Growth Orientation of Additively Manufactured Fe-6.5wt%Si Transformer Steels
Influence of SLM Printing Parameters on the Structure and Properties Functional Materials
Influence of Temperature and Print Orientation on Anisotropy Sintering in Binder Jet Stainless Steels
Iron-based Shape Memory Alloy Fabricated Using Laser Powder Bed Fusion
Latest Process Developments for Wire and Arc Additive Manufacturing
Magnetic Field Assisted DED towards the Development of Functionally Graded Materials
Mechanical Behavior of Tension of Multipolymers through Fused Deposition Modeling
Microstructure and Mechanical Properties of 304SS Printed by Metal Additive manufacturing Using Powder Sheets (MAPS)
Mitigation of Solidification Cracking in Wire Arc Additive Manufacturing (WAAM) of Fe-based Shape Memory Alloy Using Machine Hammer Peening
Multi-Metallic Laser Powder Bed Fusion: Critical Challenges to Overcome for the Creation of Robust Interfaces in a CuSn10 and 316L system
New Opportunities to Improve PBF-LB Processability and Performance of Materials by Functionalization of Powder Feedstock
Panorama of Al alloys for Additive Manufacturing
Revolutionizing Engineering Design: Functionally Integrated Materials, In-situ Imaging, and Alternative Feedstock Materials in Additive Manufacturing
Shape Memory Alloy Enabled Interlocking Metasurfaces
Tribocorrosion performance of Wire Direct Energy Deposited Commercially Pure Titanium for Structural Applications
Wire Arc Thermal Spraying for Manufacturing of WC-Metal Matrix Powders

Questions about ProgramMaster? Contact programming@programmaster.org