Defects and anomalies in powder bed fusion metal additive manufacturing

A Mostafaei, C Zhao, Y He, SR Ghiaasiaan… - Current Opinion in Solid …, 2022 - Elsevier
Metal additive manufacturing is a disruptive technology that is revolutionizing the
manufacturing industry. Despite its unrivaled capability for directly fabricating metal parts …

[HTML][HTML] Mechanistic models for additive manufacturing of metallic components

HL Wei, T Mukherjee, W Zhang, JS Zuback… - Progress in Materials …, 2021 - Elsevier
Additive manufacturing (AM), also known as 3D printing, is gaining wide acceptance in
diverse industries for the manufacturing of metallic components. The microstructure and …

Metal additive manufacturing: Technology, metallurgy and modelling

S Cooke, K Ahmadi, S Willerth, R Herring - Journal of Manufacturing …, 2020 - Elsevier
This paper provides a comprehensive review of metal additive manufacturing, a rapidly
evolving field with innovative technologies and processes. The purpose of this review paper …

A review on additive manufacturing of titanium alloys for aerospace applications: directed energy deposition and beyond Ti-6Al-4V

Z Liu, B He, T Lyu, Y Zou - Jom, 2021 - Springer
Titanium alloys are expensive and difficult to process into large complex components for
aerospace applications. Directed energy deposition (DED), one of the additive …

Damage tolerant design of additively manufactured metallic components subjected to cyclic loading: State of the art and challenges

U Zerbst, G Bruno, JY Buffiere, T Wegener… - Progress in materials …, 2021 - Elsevier
Undoubtedly, a better understanding and the further development of approaches for
damage tolerant component design of AM parts are among the most significant challenges …

Invited review article: Metal-additive manufacturing—Modeling strategies for application-optimized designs

A Bandyopadhyay, KD Traxel - Additive manufacturing, 2018 - Elsevier
Next generation, additively-manufactured metallic parts will be designed with application-
optimized geometry, composition, and functionality. Manufacturers and researchers have …

Porosity formation mechanisms and fatigue response in Al-Si-Mg alloys made by selective laser melting

KV Yang, P Rometsch, T Jarvis, J Rao, S Cao… - Materials Science and …, 2018 - Elsevier
Abstract Defects in Al-7Si-Mg and Al-10Si-Mg alloys produced by selective laser melting are
categorised into three types. The first type are large irregular-shaped defects with unmelted …

Computational modelling of process–structure–property–performance relationships in metal additive manufacturing: a review

SM Hashemi, S Parvizi… - International …, 2022 - journals.sagepub.com
In the current review, an exceptional view on the multi-scale integrated computational
modelling and data-driven methods in the Additive manufacturing (AM) of metallic materials …

Anisotropy study of the microstructure and properties of AlCoCrFeNi2. 1 eutectic high entropy alloy additively manufactured by selective laser melting

L Lan, W Wang, Z Cui, X Hao, D Qiu - Journal of Materials Science & …, 2022 - Elsevier
Abstract The AlCoCrFeNi2. 1 eutectic high-entropy alloy (EHEA) was prepared by selective
laser melting (SLM), focusing on the anisotropy of microstructure and mechanical …

[HTML][HTML] Selective laser melting of aluminum and its alloys

Z Wang, R Ummethala, N Singh, S Tang… - Materials, 2020 - mdpi.com
The laser-based powder bed fusion (LBPF) process or commonly known as selective laser
melting (SLM) has made significant progress since its inception. Initially, conventional …