Page 91 - MSAM-1-4
P. 91
Materials Science in Additive Manufacturing Survey of AM reviews
https://doi.org/10.3390/COATINGS11060740 205. Zhang H, Huang L, Tan M, et al., Overview of 3D-printed
silica glass. Micromachines, 13: 81.
198. Portanguen S, Tournayre P, Sicard J, et al., 2019, Toward the
design of functional foods and biobased products by 3D https://doi.org/10.3390/MI13010081
printing: A review. Trends Food Sci Technol, 86: 188–198.
206. Das AK, Agar DA, Rudolfsson M, et al., 2021, A review on
https://doi.org/10.1016/J.TIFS.2019.02.023 wood powders in 3D printing: Processes, properties and
199. Wang M, Li D, Zang Z, et al., 2021, 3D food printing: potential applications. J Mater Res Technol, 15: 241–255.
Applications of plant-based materials in extrusion-based https://doi.org/10.1016/J.JMRT.2021.07.110
food printing. Crit Rev Food Sci Nutr, 6: 7184–7198.
207. Wang C, Tan XP, Tor SB, et al., 2020, Machine learning in
https://doi.org/10.1080/10408398.2021.1911929 additive manufacturing: State-of-the-art and perspectives.
200. Li G, Hu L, Liu J, et al.,2022, A review on 3D printable food Addit Manuf, 36: 101538.
materials: Types and development trends. Int J Food Sci https://doi.org/10.1016/J.ADDMA.2020.101538
Technol, 57: 164–172.
208. Liu J, Gaynor AT, Chen S, et al., 2018, Current and future
https://doi.org/10.1111/IJFS.15391 trends in topology optimization for additive manufacturing.
201. Navaf M, Sunooj KV, Aaliya B, et al., 2022, 4D printing: Struct Multidiscip Optim, 57: 2457–2483.
A new approach for food printing; effect of various stimuli https://doi.org/10.1007/s00158-018-1994-3
on 4D printed food properties. A comprehensive review.
Appl Food Res, 2: 100150. 209. Ambrosi A, Pumera M, 2016, 3D-printing technologies for
electrochemical applications. Chem Soc Rev, 45: 2740–2755.
https://doi.org/10.1016/J.AFRES.2022.100150
https://doi.org/10.1039/C5CS00714C
202. Haleem A, Javaid M, Singh RP, et al., 2021, Significant
roles of 4D printing using smart materials in the field of 210. Truby Rl, Lewis JA, 2016, Printing soft matter in three
manufacturing. Adv Ind Eng Polym Res, 4: 301–311. dimensions. Nature, 540: 371–378.
https://doi.org/10.1016/J.AIEPR.2021.05.001 https://doi.org/10.1038/nature21003
203. Kwon JY, Park HE, Park YB, et al., 2017, Potentials of 211. Trenfield SJ, Awad A, Goyanes A, et al., 3D printing
additive manufacturing with smart materials for chemical pharmaceuticals: Drug development to frontline care.
biomarkers in wearable applications. Int J Precis Eng Manuf Trends Pharmacol Sci, 39: 440–451.
Technol, 4: 335–347. https://doi.org/10.1016/J.TIPS.2018.02.006
https://doi.org/10.1007/S40684-017-0039-5 212. Uriondo A, Esperon-Miguez M, Perinpanayagam S, 2022,
204. Liu H, Jiang Q, Huo J, et al., 2020, Crystallization in additive The present and future of additive manufacturing in the
manufacturing of metallic glasses: A review. Addit Manuf, aerospace sector: A review of important aspects. Proceed Inst
36: 101568. Mech Eng G J Aerospace Eng, 229: 2132–2147.
https://doi.org/10.1016/J.ADDMA.2020.101568 https://doi.org/10.1177/0954410014568797
Volume 1 Issue 4 (2022) 22 https://doi.org/10.18063/msam.v1i4.21

