Additive manufacturing of metallic lattice structures: Unconstrained design, accurate fabrication, fascinated performances, and challenges

LY Chen, SX Liang, Y Liu, LC Zhang - Materials Science and Engineering …, 2021‏ - Elsevier
Lattice structures, which are also known as architected cellular structures, have been
applied in various industrial sectors, owing to their fascinated performances, such as low …

Design, printing, and engineering of regenerative biomaterials for personalized bone healthcare

Z Jia, X Xu, D Zhu, Y Zheng - Progress in Materials Science, 2023‏ - Elsevier
Trauma-and disease-related skeletal defects and illnesses are plaguing millions of people
especially in an ageing globe. Recently, the convergence of additive manufacturing (AM) …

[HTML][HTML] Architected cellular materials: A review on their mechanical properties towards fatigue-tolerant design and fabrication

M Benedetti, A Du Plessis, RO Ritchie… - Materials Science and …, 2021‏ - Elsevier
Additive manufacturing of industrially-relevant high-performance parts and products is today
a reality, especially for metal additive manufacturing technologies. The design complexity …

A review of additive manufacturing of metamaterials and develo** trends

J Fan, L Zhang, S Wei, Z Zhang, SK Choi, B Song… - Materials Today, 2021‏ - Elsevier
The concept of metamaterials originates from the proposal of left-hand materials with
negative refractive index, followed by which, varieties of metamaterials with kinds of fantastic …

[HTML][HTML] Design and optimization of lattice structures: A review

C Pan, Y Han, J Lu - Applied Sciences, 2020‏ - mdpi.com
Cellular structures consist of foams, honeycombs, and lattices. Lattices have many
outstanding properties over foams and honeycombs, such as lightweight, high strength …

Polymer 3D printing review: Materials, process, and design strategies for medical applications

AME Arefin, NR Khatri, N Kulkarni, PF Egan - Polymers, 2021‏ - mdpi.com
Polymer 3D printing is an emerging technology with recent research translating towards
increased use in industry, particularly in medical fields. Polymer printing is advantageous …

[HTML][HTML] Improving biocompatibility for next generation of metallic implants

A Bandyopadhyay, I Mitra, SB Goodman… - Progress in materials …, 2023‏ - Elsevier
The increasing need for joint replacement surgeries, musculoskeletal repairs, and
orthodontics worldwide prompts emerging technologies to evolve with healthcare's …

[HTML][HTML] SLM lattice structures: Properties, performance, applications and challenges

T Maconachie, M Leary, B Lozanovski, X Zhang… - Materials & Design, 2019‏ - Elsevier
Additive manufacturing (AM), particularly Selective Laser Melting (SLM) has enabled
development of lattice structures with unique properties. Through control of various …

[HTML][HTML] Research progress on the design and performance of porous titanium alloy bone implants

C Song, L Liu, Z Deng, H Lei, F Yuan, Y Yang… - Journal of Materials …, 2023‏ - Elsevier
The porous structure design of implants can not only obtain a more lightweight implant but
also provide more space for its cell growth. The technology development of additive …

[HTML][HTML] Additively manufactured metallic biomaterials

E Davoodi, H Montazerian, AS Mirhakimi… - Bioactive materials, 2022‏ - Elsevier
Metal additive manufacturing (AM) has led to an evolution in the design and fabrication of
hard tissue substitutes, enabling personalized implants to address each patient's specific …