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International Journal of Bioprinting                            Corrosion behavior of SLM-prepared 316L steel




            Funding                                               directed energy deposition based additive manufacturing.
                                                                  J Laser Appl. 2020;32(4):042002.
            The work was supported by VŠB–Technical University      doi: 10.2351/7.0000004
            of Ostrava (project number SP2023/022) and
            Brno University of Technology (project number      5.   Wang Z, Zhang Y, Bernard, A. A constructive solid geometry-
                                                                  based generative design method for additive manufacturing.
            FSI-S-23-8231). GN also acknowledges the support by   Addit Manuf. 2021;41(4):101952.
            the MEYS infrastructural project LM2023057. Neutron      doi: 10.1016/j.addma.2021.101952
            diffraction measurements were carried out at the
            CANAM infrastructure of the NPI CAS Rez. The       6.   Weyhrich CW, Long TE. Additive manufacturing of high-
                                                                  performance engineering polymers: Present and future.
            employment of the CICRR infrastructure supported by   Polym Int. 2022;71(5):532-536.
            MEYS project LM2023041 is acknowledged.               doi: 10.1002/pi.6343

            Conflict of interest                               7.   Nefedovaa LA, Ivkov VI, Sychov MM, Lebedev LA,
                                                                  Dyachenko SV. Additive manufacturing of ceramic
            The authors declare no conflicts of interest.         insulators. Mater Today Proc. 2020;30(2):520-522.
                                                                  doi: 10.3390/ma16134636
            Author contributions                               8.   Sotov A, Kantyukov A, Popovich A, Sufiiarov V. A review on
            Conceptualization: Radim Kocich, Lenka Kunčická       additive manufacturing of functional gradient piezoceramic.
            Formal analysis: Radim Kocich                         Micromachines. 2022;13(7):1129.
            Investigation:  Lenka Kunčická, Gergely Németh, Adam      doi: 10.3390/mi13071129
               Weiser, Marek Benč                              9.   Moreno  Madrid  AP,  Vrech  SM,  Sanchez  MA,  Rodriguez
            Methodology: Radim Kocich, Marek Benč                 AP. Advances in additive manufacturing for bone tissue
            Writing – original draft: Lenka Kunčická              engineering scaffolds.  Mater Sci Eng C. 2019;100(15):
            Writing – review & editing: Radim Kocich, Lenka Kunčická  631-644.
                                                                  doi: 10.1016/j.msec.2019.03.037
            Ethics approval and consent to participate         10.  Dzogbewu TC. Laser powder bed fusion of Ti6Al4V lattice
                                                                  structures and their  applications.  J Met Mater Miner.
            Not applicable.                                       2020;30(4):68-78.
                                                                  doi: 10.55713/jmmm.v30i4.821
            Consent for publication
                                                               11.  Mohammed  A,  Jiménez  A,  Bidare,  P,  et  al.  Review  on
            Not applicable.                                       engineering  of  bone  scaffolds  using  conventional and
                                                                  additive manufacturing technologies. 3D Print Addit Manuf.
            Availability of data                                  2023;[online].
                                                                  doi: 10.1089/3dp.2022.0360
            The data can be made available on request.
                                                               12.  Yamashita Y, Murakami T, Mihara R, Okada M, Murakami
            References                                            Y.  Defect analysis  and  fatigue  design  basis  for  Ni-based
                                                                  superalloy 718 manufactured by additive manufacturing.
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            Volume 10 Issue 1 (2024)                       352                          https://doi.org/10.36922/ijb.1416
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