Page 83 - MSAM-1-4
P. 83

Materials Science in Additive Manufacturing                                       Survey of AM reviews


               https://doi.org/10.1016/j.apsusc.2007.08.085       Chem Mater, 13: 3299–3305.
            13.  Deckers J,  Shahzad  K,  Vleugels  J,  et al.,  2012,  Isostatic      https://doi.org/10.1021/cm0101632
               pressing assisted indirect selective laser sintering of alumina   25.  de Gans BJ, Duineveld PC, Schubert US,  et al., 2004,
               components. Rapid Prototyp J, 18: 409–419.
                                                                  Inkjet Printing of Polymers: State of the Art and Future
               https://doi.org/10.1108/13552541211250409          Developments. Germany: WILEY‐VCH Verlag.
            14.  Mahmoud D, Elbestawi MA, 2019, Selective laser melting      https://doi.org/10.1002/adma.200300385
               of porosity graded lattice structures for bone implants. Int J
               Adv Manuf Technol, 100: 2915–2927.              26.  Blazdell PF, Evans JR, 2000, Application of a continuous ink
                                                                  jet printer to solid freeforming of ceramics. J Mater Process
               https://doi.org/10.1007/s00170-018-2886-9          Technol, 99: 94–102.
            15.  Coeck S, Bisht M, Plas J, et al., 2019, Prediction of lack of      https://doi.org/10.1016/S0924-0136(99)00392-1
               fusion porosity in selective laser melting based on melt pool
               monitoring data. Addit Manuf, 25: 347–356.      27.  Slade CE, Evans JR, 1998, Freeforming ceramics using a
                                                                  thermal jet printer. J Mater Sci Lett, 17: 1669–1671.
               https://doi.org/10.1016/J.ADDMA.2018.11.015
                                                                  https://doi.org/10.1023/A:1006666718653
            16.  Kruth JP, Wang X, Laoui T, et al., 2003, Lasers and materials
               in selective laser sintering. Assem Autom, 23L 357–371.   28.  Elliott AM, Ivanova OS, Williams CB, 2013, Inkjet printing
                                                                  of quantum dots in photopolymer for use in additive
               https://doi.org/10.1108/01445150310698652          manufacturing of nanocomposites.  Adv Eng Mater,
            17.  Siddiqui  SF,  Fasoro  AA,  Cole  C, et al.,  2019,  Mechanical   15: 903–907.
               characterization and modeling of direct metal laser sintered      https://doi.org/10.1002/adem.201300020
               stainless steel GP1. J Eng Mater Technol, 141: 031009.
                                                               29.  Ko SH, Chung J, Hotz N, et al., 2010, Metal nanoparticle
               https://doi.org/10.1115/1.4042867                  direct inkjet printing for low-temperature 3D micro metal
            18.  Jiazhu W, Liu T, Chen H, et al., 2019, Simulation of laser   structure fabrication. J Micromech Microeng, 20: 125010.
               attenuation and heat transport during direct metal      https://doi.org/10.1088/0960-1317/20/12/125010
               deposition considering beam profile.  J  Mater Process
               Technol, 270: 92–105.                           30.  Polozov I, Sufiiarov V, Shamshurin A, 2019, Synthesis of
                                                                  titanium orthorhombic alloy using binder jetting additive
               https://doi.org/10.1016/J.JMATPROTEC.2019.02.021   manufacturing. Mater Lett, 243: 88–91.
            19.  Nahmany M, Hadad Y, Aghion E, et al., 2019, Microstructural      https://doi.org/10.1016/J.MATLET.2019.02.027
               assessment and mechanical properties of electron beam
               welding of AlSi10Mg specimens fabricated by selective laser   31.  Snelling D, Blount H, Forman C, et al., 2013, The effects of
               melting. J Mater Process Technol, 270: 228–240.    3D pritned molds on metal castings. 2013 International Solid
                                                                  Freeform Fabrication Symposium, 827–845.
               https://doi.org/10.1016/J.JMATPROTEC.2019.02.025
                                                               32.  Williams  CB,  Cochran  JK,  Rosen  DW,  2011,  Additive
            20.  Kruth JP, Mercelis P, Van Vaerenbergh J, et al., 2005, Binding   manufacturing of metallic cellular materials via three-
               mechanisms in selective laser sintering and selective laser   dimensional printing. Int J Adv Manuf Technol, 53: 231–239.
               melting. Rapid Prototyp J, 11: 26–36.
                                                                  https://doi.org/10.1007/s00170-010-2812-2
               https://doi.org/10.1108/13552540510573365
                                                               33.  Lam CX, Mo XM, Teoh SH, et al., 2002, Scaffold development
            21.  Murr LE, Gaytan SM, Ramirez DA,  et al., 2012, Metal   using 3D printing with a starch-based polymer. Mater Sci
               fabrication by additive manufacturing using laser and electron   Eng C, 20: 49–56.
               beam melting technologies. J Mater Sci Technol, 28: 1–14.
                                                                  https://doi.org/10.1016/S0928-4931(02)00012-7
               https://doi.org/10.1016/S1005-0302(12)60016-4
                                                               34.  Yoo J, Cima MJ, Khanuja S, et al., 1993, Structural Ceramic
            22.  Yang  J,  Ouyang  H,  Wang  Y,  2010,  Direct  metal  laser   Components by 3D Printing. In: International Solid Freeform
               fabrication: Machine development and experimental work.   Fabrication Symposium, University of Texas at Austin.
               Int J Adv Manuf Technol, 46: 1133–1143.
                                                               35.  Eisenbarth D, Esteves PM, Wirth F, et al., 2019, Spatial
               https://doi.org/10.1007/s00170-009-2174-9          powder flow measurement and efficiency prediction
            23.  Shellabear M, Nyrhilä O, 2004, DML-Development History   for laser direct metal deposition.  Surf Coatings Technol,
               and State of the Art. In: Proceeding 4  Laser Assisted Net   362: 397–408.
                                           th
               Shape Engineering Conference. (LANE 2004). pp. 21–24.
                                                                  https://doi.org/10.1016/J.SURFCOAT.2019.02.009
               https://doi.org/10.1016/j.molmed.2015.05.003
                                                               36.  Sandia National Laboratories, 1997, Creating a Complex
            24.  Calvert P, 2001, Inkjet printing for materials and devices.   Metal Part in a Day is Goal of Commercial Consortium.

            Volume 1 Issue 4 (2022)                         14                     https://doi.org/10.18063/msam.v1i4.21
   78   79   80   81   82   83   84   85   86   87   88