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 …

[HTML][HTML] Multi-material additive manufacturing technologies for Ti-, Mg-, and Fe-based biomaterials for bone substitution

NE Putra, MJ Mirzaali, I Apachitei, J Zhou, AA Zadpoor - Acta biomaterialia, 2020 - Elsevier
The growing interest in multi-functional metallic biomaterials for bone substitutes challenges
the current additive manufacturing (AM,= 3D printing) technologies. It is foreseeable that …

Fabricating multi-part assemblies

PA Schmitt, JS Myerberg, R Fulop, MA Gibson… - US Patent …, 2017 - Google Patents
2015/0080495 AI 3/2015 Heikkila 2015/0125334 AL 5/2015 Uetani et al. 2015/0145168 A1
5/2015 Rodgers et al. 2015/0197862 A1 7/2015 Volk et al. 2015/0202825 A1* 7/2015 …

Three-dimensional printing of multilayered tissue engineering scaffolds

SM Bittner, JL Guo, A Melchiorri, AG Mikos - Materials today, 2018 - Elsevier
The field of tissue engineering has produced new therapies for the repair of damaged
tissues and organs, utilizing biomimetic scaffolds that mirror the mechanical and biological …

Additive manufacturing solidification methodologies for ink formulation

X Xu, J Yang, W Jonhson, Y Wang, A Suwardi… - Additive …, 2022 - Elsevier
With the burgeoning interest in 3D printing for complex and high-resolution patterned
devices, ink formulation plays a vital role for its successful utilization in various application in …

3D ink-extrusion additive manufacturing of CoCrFeNi high-entropy alloy micro-lattices

C Kenel, NPM Casati, DC Dunand - Nature communications, 2019 - nature.com
Additive manufacturing of high-entropy alloys combines the mechanical properties of this
novel family of alloys with the geometrical freedom and complexity required by modern …

Materials, processes, and facile manufacturing for bioresorbable electronics: a review

X Yu, W Shou, BK Mahajan, X Huang… - Advanced …, 2018 - Wiley Online Library
Bioresorbable electronics refer to a new class of advanced electronics that can completely
dissolve or disintegrate with environmentally and biologically benign byproducts in water …

[HTML][HTML] Solvent-cast 3D printing of magnesium scaffolds

J Dong, Y Li, P Lin, MA Leeflang, S Van Asperen, K Yu… - Acta Biomaterialia, 2020 - Elsevier
Biodegradable porous magnesium (Mg) scaffolds are promising for application in the
regeneration of critical-sized bone defects. Although additive manufacturing (AM) carries the …

Biodegradable iron-based materials—what was done and what more can be done?

G Gąsior, J Szczepański, A Radtke - Materials, 2021 - mdpi.com
Iron, while attracting less attention than magnesium and zinc, is still one of the best
candidates for biodegradable metal stents thanks its biocompatibility, great elastic moduli …

Recent progresses of 3D printing technologies for structural energy storage devices

L Zeng, P Li, Y Yao, B Niu, S Niu, B Xu - Materials Today Nano, 2020 - Elsevier
Although existing energy storage devices (ESDs) that are prepared by traditional
technologies can meet the demands of many application scenarios in our life, there are still …