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Materials Science in Additive Manufacturing                          Alumina platelets additive manufacturing



            Funding                                               composites. Science. 2005;310(5751):1144-1147.

            This research is partially supported by the Advanced      doi: 10.1126/science.1116994
            Research and Technology Innovation Centre (ARTIC),   5.   Wegst UG, Bai H, Saiz E, Tomsia AP, Ritchie RO. Bioinspired
            the National University of Singapore under Grant (project   structural materials. Nat Mater. 2015;14(1):23-36.
            number: A-0005947-31-00), and is supported by A*STAR
            under its IAF PP Grant (Project No. M22K4a0044) under      doi: 10.1038/nmat4089
            the work package of “Thermal Management of Motor with   6.   Wang R, Suo Z, Evans A, Yao N, Aksay IA. Deformation
            Ferrofluid Composite Particles,” and the Natural Science   mechanisms in nacre. J Mater Res. 2001;16(9):2485-2493.
            Foundation  of  Jiangxi  Province  funded  project  No.  of      doi: 10.1557/JMR.2001.0340
            20232BCJ22058, entitled “Research on Key Technologies   7.   Rabiei R, Bekah S, Barthelat F. Failure mode transition
            of Metal Ultrathin Plates for High-Power Hydrogen Fuel   in nacre and bone-like materials.  Acta Biomater.
            Cells for Multi-Source Energy Equipment.”             2010;6(10):4081-4089.
            Conflict of interest                                  doi: 10.1016/j.actbio.2010.04.008

            The authors declare that they have no competing interests.  8.   Zhao  H,  Yang Z,  Guo  L.  Nacre-inspired  composites  with
                                                                  different macroscopic dimensions: Strategies for improved
            Author contributions                                  mechanical performance and applications. NPG Asia Mater.
                                                                  2018;10(4):1-22.
            Conceptualization: Ming Xuan Gan
            Formal analysis: Tao Li, Beng Wah Chua                doi: 10.1038/s41427-018-0009-6
            Investigation: Lijie Zhang, Guanjin Li             9.   Gan MX, Wong CH. Properties of selective laser
            Methodology: Jiansheng Liu                            melted  spodumene  glass-ceramic.  J Eur Ceram Soc.
            Writing – original draft: Ming Xuan Gan               2017;37(13):4147-4154.
            Writing – review & editing: Beng Wah Chua             doi: 10.1016/j.jeurceramsoc.2017.04.060

            Ethics approval and consent to participate         10.  Gan MX, Wong CH. Experimental studies on the properties
                                                                  of selectively laser melted alumina-spodumene composite.
            Not applicable.                                       Ceram Int. 2018;44(15):19008-19015.

            Consent for publication                               doi: 10.1016/j.ceramint.2018.07.144
                                                               11.  Griffith ML, Halloran JW. Freeform fabrication of ceramics via
            Not applicable.                                       stereolithography. J Am Ceram Soc. 1996;79(10):2601-2608.

            Availability of data                                  doi: 10.1111/j.1151-2916.1996.tb09022.x
            Data are available from the corresponding author on   12.  Lee YH, Lee JB, Maeng WY, Koh YH, Kim HE. Photocurable
            reasonable request.                                   ceramic slurry using solid camphor as novel diluent for
                                                                  conventional digital light processing (DLP) process. J Eur
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            Volume 3 Issue 1 (2024)                         8                       https://doi.org/10.36922/msam.2711
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