[HTML][HTML] Alloy design via additive manufacturing: Advantages, challenges, applications and perspectives

A Bandyopadhyay, KD Traxel, M Lang, M Juhasz… - Materials Today, 2022 - Elsevier
Additive manufacturing (AM) has rapidly changed both large-and small-scale production
environments across many industries. By re-envisioning parts from the ground up, not …

[HTML][HTML] Design of titanium alloys by additive manufacturing: A critical review

T Zhang, CT Liu - Advanced Powder Materials, 2022 - Elsevier
Additive manufacturing (AM) is an innovative technology that creates objects with a complex
geometry layer-by-layer, and it has rapidly prospered in manufacturing metallic parts for …

In situ design of advanced titanium alloy with concentration modulations by additive manufacturing

T Zhang, Z Huang, T Yang, H Kong, J Luan, A Wang… - Science, 2021 - science.org
Additive manufacturing is a revolutionary technology that offers a different pathway for
material processing and design. However, innovations in either new materials or new …

Recent progress and scientific challenges in multi-material additive manufacturing via laser-based powder bed fusion

C Wei, L Li - Virtual and Physical Prototyping, 2021 - Taylor & Francis
Multi-material additive manufacturing provides a new route for fabricating components with
tailored physical properties. Laser-based powder bed fusion (L-PBF), also known as …

In-situ alloying in laser-based additive manufacturing processes: A critical review

MH Mosallanejad, B Niroumand, A Aversa… - Journal of Alloys and …, 2021 - Elsevier
The growing need to develop cost-effective and efficient alloys requires enhancing the
flexibility of the current production methods. Additive manufacturing (AM), as an emerging …

Powder bed fusion additive manufacturing using critical raw materials: A review

VV Popov, ML Grilli, A Koptyug, L Jaworska… - Materials, 2021 - mdpi.com
The term “critical raw materials”(CRMs) refers to various metals and nonmetals that are
crucial to Europe's economic progress. Modern technologies enabling effective use and …

Clinical, industrial, and research perspectives on powder bed fusion additively manufactured metal implants

M Lowther, S Louth, A Davey, A Hussain… - Additive …, 2019 - Elsevier
For over ten years, metallic skeletal endoprostheses have been produced in select cases by
additive manufacturing (AM) and increasing awareness is driving demand for wider access …

[HTML][HTML] Predicting the chemical homogeneity in laser powder bed fusion (LPBF) of mixed powders after remelting

H Li, EG Brodie, C Hutchinson - Additive Manufacturing, 2023 - Elsevier
An advantage of laser powder bed fusion (LPBF) of metals is that one can create
topologically complex components with comparative ease. Most LPBF studies use …

A high strength and low modulus metastable β Ti-12Mo-6Zr-2Fe alloy fabricated by laser powder bed fusion in-situ alloying

R Duan, S Li, B Cai, W Zhu, F Ren, MM Attallah - Additive Manufacturing, 2021 - Elsevier
Biocompatible β Ti-alloys with high strength and low modulus are of interest for additive
manufacturing of biomedical implants. In this study, a metastable β Ti-12Mo-6Zr-2Fe (TMZF) …

The influence of iron in minimizing the microstructural anisotropy of Ti-6Al-4V produced by laser powder-bed fusion

M Simonelli, DG McCartney, P Barriobero-Vila… - … Materials Transactions A, 2020 - Springer
There remains a significant challenge in adapting alloys for metal-based additive
manufacturing (AM). Adjusting alloy composition to suit the process, particularly under …