4D printing in biomedical engineering: Advancements, challenges, and future directions

M Ramezani, Z Mohd Ripin - Journal of functional biomaterials, 2023 - mdpi.com
4D printing has emerged as a transformative technology in the field of biomedical
engineering, offering the potential for dynamic, stimuli-responsive structures with …

[HTML][HTML] Additive manufacturing: Technology, applications, markets, and opportunities for the built environment

A Al Rashid, SA Khan, SG Al-Ghamdi, M Koç - Automation in Construction, 2020 - Elsevier
Additive manufacturing (AM) technologies (also known as 3D printing-3DP) have been
rapidly advancing into various industrial sectors, including aerospace, automotive, medical …

Fused filament fabrication: A state-of-the-art review of the technology, materials, properties and defects

A Yadav, P Rohru, A Babbar, R Kumar… - International Journal on …, 2023 - Springer
Fused filament fabrication (FFF) is one of the additive manufacturing (AM) techniques that
have revolutionized the manufacturing strategy in the last 2 to 3 decades. The quality of the …

Complex 3D bioprinting methods

S Ji, M Guvendiren - APL bioengineering, 2021 - pubs.aip.org
3D bioprinting technology is evolving in complexity to enable human-scale, high-resolution,
and multi-cellular constructs to better mimic the native tissue microenvironment. The ultimate …

[HTML][HTML] Applications of 3D printing in tumor treatment

J Li, D Liang, X Chen, W Sun, X Shen - Biomedical Technology, 2024 - Elsevier
As an emerging technology relevant to materials science, 3D printing technology simplifies
material production process, shortens the preparation cycle, and provides a broader space …

[HTML][HTML] Development of robot assisted hybrid additive manufacturing technology for the freeform fabrication of lattice structures

A De Marzi, M Vibrante, M Bottin, G Franchin - Additive Manufacturing, 2023 - Elsevier
The extensive study and development of additive manufacturing technologies have allowed
not only increased customization of the final parts but especially of their complexity. From …

Controls and process planning strategies for 5-axis laser directed energy deposition of Ti-6Al-4V using an 8-axis industrial robot and rotary motion

BT Gibson, P Mhatre, MC Borish, CE Atkins… - Additive …, 2022 - Elsevier
Interest in multi-axis additive manufacturing has grown significantly in recent years due to
associated benefits that range from improved quality to support for greater geometric …

Robocasting of Ceramic Fischer–Koch S Scaffolds for Bone Tissue Engineering

V Baumer, E Gunn, V Riegle, C Bailey… - Journal of functional …, 2023 - mdpi.com
Triply Periodic Minimal Surfaces (TPMS) are promising structures for bone tissue
engineering scaffolds due to their relatively high mechanical energy absorption, smoothly …

Challenges of 3D printing in LiB electrodes: Emphasis on material-design properties, and performance of 3D printed Si-based LiB electrodes

OJ Sanumi, PG Ndungu, BO Oboirien - Journal of Power Sources, 2022 - Elsevier
Various 3D printing methods like inkjet printing, direct ink writing, and fused deposition
modelling were reported in this review. Firstly, the work covered various 3D printed carbon …

Volume decomposition for multi-axis support-free and gouging-free printing based on ellipsoidal slicing

F Xie, X Jing, C Zhang, S Chen, D Bi, Z Li, D He… - Computer-Aided …, 2022 - Elsevier
Continuous multi-axis printing has drawn more and more attention owing to its unique
advantages of eliminating the need of support (at least in theory) when printing complex …