[HTML][HTML] Big data, machine learning, and digital twin assisted additive manufacturing: A review

L **, X Zhai, K Wang, K Zhang, D Wu, A Nazir, J Jiang… - Materials & Design, 2024‏ - Elsevier
Additive manufacturing (AM) has undergone significant development over the past decades,
resulting in vast amounts of data that carry valuable information. Numerous research studies …

[HTML][HTML] Review of additively manufactured polymeric metamaterials: design, fabrication, testing and modeling

A Almesmari, N Baghous, CJ Ejeh, I Barsoum… - Polymers, 2023‏ - mdpi.com
Metamaterials are architected cellular materials, also known as lattice materials, that are
inspired by nature or human engineering intuition, and provide multifunctional attributes that …

Study on crashworthiness of nature-inspired functionally graded lattice metamaterials for bridge pier protection against ship collision

Y Nian, S Wan, X Wang, P Zhou, M Avcar, M Li - Engineering Structures, 2023‏ - Elsevier
Lightweight lattice metamaterials can effectively enhance the impact resistance of thin-
walled structures. With the aim of further investigating the potential of lattice-filled composite …

[HTML][HTML] Laser-based additive manufacturing of bulk metallic glasses: recent advances and future perspectives for biomedical applications

AAA Aliyu, C Panwisawas, J Shinjo… - journal of materials …, 2023‏ - Elsevier
Bulk metallic glasses (BMGs) are non-crystalline class of advanced materials and have
found potential applications in the biomedical field. Although there are numerous …

[HTML][HTML] Comparison of in-plane compression of additively manufactured Ti6Al4V 2D auxetic structures: lattice design, manufacturing speed, and failure mode

Z Eren, O Gokcekaya, D Balkan, T Nakano… - Materials & Design, 2024‏ - Elsevier
The metal-based 2D auxetic lattice structures hold the potential for multifunctional tasks in
aerospace applications. However, the compression response of those manufactured by …

Deep reinforcement learning based toolpath generation for thermal uniformity in laser powder bed fusion process

M Qin, J Ding, S Qu, X Song, CCL Wang, WH Liao - Additive Manufacturing, 2024‏ - Elsevier
Laser powder bed fusion (LPBF) is a widely used metal additive manufacturing technology.
However, the accumulation of internal residual stress during printing can cause significant …

Multi‐Physical Lattice Metamaterials Enabled by Additive Manufacturing: Design Principles, Interaction Mechanisms, and Multifunctional Applications

WWS Ma, H Yang, Y Zhao, X Li, J Ding, S Qu… - Advanced …, 2025‏ - Wiley Online Library
Lattice metamaterials emerge as advanced architected materials with superior physical
properties and significant potential for lightweight applications. Recent developments in …

Machine learning–enabled inverse design of shell-based lattice metamaterials with optimal sound and energy absorption

Z Hu, J Ding, S Ding, WWS Ma, JW Chua… - Virtual and Physical …, 2024‏ - Taylor & Francis
Currently, the development in shell-based lattice, is increasingly focused on
multifunctionality, with growing interest in combining sound and energy absorption …

Residual deformation analysis of laser powder bed fusion-fabricated lattice structures

Y Wang, H Zhu, M **ao, C Chen, Y Qi… - Virtual and Physical …, 2024‏ - Taylor & Francis
Lattice structures are crucial for weight reduction, and laser powder bed fusion (LPBF) is an
efficient fabrication method. However, there's a notable research gap in understanding the …

Measurement of precision and quality characteristics of lattice structures in metal-based additive manufacturing using computer tomography analysis

K Moj, R Owsiński, G Robak, MK Gupta, S Scholz… - Measurement, 2024‏ - Elsevier
Additive manufacturing, especially lattice structure fabrication, has garnered interest for its
potential in high-precision aerospace and medical applications. Due to porosity and …