Results 191 to 200 of about 8,844 (225)
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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 MaterialsAbstract 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
International Journal of Machine Tools and Manufacture, 2021
Luis Norberto López de Lacalle +2 more
exaly
Luis Norberto López de Lacalle +2 more
exaly
Controlling the Young’s modulus of a ß-type Ti-Nb alloy via strong texturing by LPBF
Materials and Design, 2022Stefan Pilz +2 more
exaly
Evaluation of LPBF Steels for Nuclear Applications
2023Srinivas Mantri, Xuan Zhang
openaire +1 more source
Anti-corrosion superhydrophobic surface of LPBF- NiTi alloy fabricated by nanosecond laser machining
Optics and Laser Technology, 2023Zezhou Xu
exaly
International Journal of Machine Tools and Manufacture, 2020
Niranjan D Parab, Qilin Guo, Minglei Qu
exaly
Niranjan D Parab, Qilin Guo, Minglei Qu
exaly

