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Materials Science in Additive Manufacturing                  Tensile and fatigue properties of Ti6Al4V SLM parts



               of quenching on fatigue life of Ti6Al4V alloy. IOP Conf Ser   30.  ASTM International, 2021, ASTM E8-21: Standard Test
               Mater Sci Eng, 1178: 012006.                       Methods for Tension Testing of Metallic Materials. West
                                                                  Conshohocken, PA: ASTM International.
               https://doi.org/10.1088/1757-899X/1178/1/012006
                                                               31.  Campanelli SL, Contuzzi N, Ludovico AD,  et al., 2014,
            25.  Kumar P, Ramamurty U, 2019, Microstructural optimization   Manufacturing and characterization of Ti6al4v lattice
               through heat treatment for enhancing the fracture toughness   components manufactured by selective laser melting.
               and fatigue crack growth resistance of selective laser melted   Materials (Basel), 7: 4803–4822.
               Ti-6AL-4V alloy. Acta Mater, 169: 45–59.
                                                                  https://doi.org/10.3390/ma7064803
               https://doi.org/10.1016/j.actamat.2019.03.003
                                                               32.  Cardaropoli F, Alfieri V, Caiazzo F, et al., 2012, Dimensional
            26.  Shipley H, McDonnell D, Culleton M,  et al., 2018,   analysis for the definition of the influence of process
               Optimisation of process parameters to address fundamental   parameters in selective laser melting of Ti-6Al-4V alloy.
               challenges during selective laser melting of Ti-6AL-4V:   Proc Inst Mech Eng Part B J Eng Manuf, 226: 1136–1142.
               A review. Int J Mach Tools Manuf, 128: 1–20.
                                                                  https://doi.org/10.1177/0954405412441885
               https://doi.org/10.1016/j.ijmachtools.2018.01.003
                                                               33.  Păcurar R, Păcurar A, 2014, Finite element analysis to
            27.  Important Index and Parameters of 3D Metal Printing,   improve the accuracy of parts made by stainless steel 316L
               Solize.  Available  from:  https://www.solize.com/en/  material using selective laser melting technology. Appl Mech
               column/2018/0416 [Last accessed on 2023 May 04].   Mater, 657: 236–240.
            28.  ASTM International, 2021, ASTM E466-21: Standard      https://doi.org/10.4028/www.scientific.net/AMM.657.236
               Practice for Conducting Force Controlled Constant
               Amplitude Axial Fatigue Tests of Metallic Materials. West   34.  Scanning Patterns for Selective Laser Melting. Inside Metal
               Conshohocken, PA: ASTM International.              Additive Manufacturing. Available from: https://www.
                                                                  insidemetaladditivemanufacturing.com/blog/-scanning-
            29.  Simonelli M, Tse YY, Tuck C, 2014, Effect of the build   patterns-in-slm [Last accessed on 2023 May 04].
               orientation on the mechanical properties and fracture   35.  Kruth JP, Badrossamay M, Yasa E, et al., 2010, Part and Material
               modes of SLM Ti-6AL-4V. Mater Sci Eng A, 616: 1–11.
                                                                  Properties in Selective Laser Melting of Metals. In: Proceedings
               https://doi.org/10.1016/j.msea.2014.07.086         of the 16  International Symposium on Electromachining.
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            Volume 2 Issue 2 (2023)                         12                      https://doi.org/10.36922/msam.0912
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