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Laser Powder Bed Fusion (LPBF)

2023
S. Bremen   +17 more
openaire   +1 more source

Nanoindentation-Driven Analysis of Mechanical Properties in LPBF Ti6Al4V

Volume 1: Smart Additive Manufacturing; Multi-Material Processing in AM; Advances in Metal AM Processes; In Situ Monitoring, Non-Destructive Evaluation, and Qualification for AM; Advances in Manufacturing and Processing of Polymers and Composites; Laser-Based Advanced Manufacturing and Material Processing; Smart, Innovative, and Low-Cost Tooling Systems for Advanced Materials Manufacturing; Bio-Manufacturing of Engineered Living Materials
Abstract This study explores the material behavior of Ti6Al4V fabricated through Laser Powder Bed Fusion (LPBF) under optimized processing conditions, with a focus on key mechanical properties such as hardness, modulus of elasticity, creep indentation behavior, and stress relaxation assessed through nanoindentation at ambient conditions.
Lutfun Nipa   +2 more
openaire   +1 more source

On the relationship between cutting forces and anisotropy features in the milling of LPBF Inconel 718 for near net shape parts

International Journal of Machine Tools and Manufacture, 2021
Luis Norberto López de Lacalle   +2 more
exaly  

Stiffening near-net-shape functional parts of Inconel 718 LPBF considering material anisotropy and subsequent machining issues

Mechanical Systems and Signal Processing, 2022
Felipe Marin   +1 more
exaly  

Controlling the Young’s modulus of a ß-type Ti-Nb alloy via strong texturing by LPBF

Materials and Design, 2022
Stefan Pilz   +2 more
exaly  

Direct observation of pore formation mechanisms during LPBF additive manufacturing process and high energy density laser welding

International Journal of Machine Tools and Manufacture, 2020
Niranjan D Parab, Qilin Guo, Minglei Qu
exaly  

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