Page 24 - MSAM-2-3
P. 24

Materials Science in Additive Manufacturing                              High-performance materials in AM



            106.  Li J, Xiang S, Luan H, et al., 2019, Additive manufacturing      https://doi.org/10.1520/F3001-14R21
                of high-strength CrMnFeCoNi high-entropy alloys-  118.  ASTM Committee F42, 2016, ASTM F3187-16 Standard
                based composites with WC addition. J Mater Sci Technol,   Guide for Directed Energy Deposition of Metals. United
                35: 2430–2434.
                                                                   States: ASTM.
                https://doi.org/10.1016/j.jmst.2019.05.062
                                                                   https://doi.org/10.1520/F3187-16
            107.  Amar A, Li J, Xiang S, et al., 2019, Additive manufacturing
                of high-strength CrMnFeCoNi-based high entropy alloys   119.  ISO/TC 261-Additive Manufacturing. ISO. Available
                with TiC addition. Intermetallics, 109: 162–166.   from:  https://www.iso.org/committee/629086.html  [Last
                                                                   accessed on 2022 Dec 10].
                https://doi.org/10.1016/j.intermet.2019.04.005
                                                               120.  Additive manufacturing-material Extrusion-based Additive
            108.  AMS4999: Titanium Alloy Laser Deposited Products-6al-4v-  Manufacturing of Plastic Materials-part  1: Feedstock
                Annealed-SAE International. Available from: https://www.sae.  Materials. Available from: https://www.astm.org/f3241-20.
                org/standards/content/ams4999 [Last accessed on 2022 Dec 10].  html [Last accessed on 2022 Dec 10].
            109.  AMS4999A: Titanium  Alloy Direct Deposited Products   121.  CORDIS European Commission. Available from: https://
                6Al-4V Annealed-SAE International. Available from:   cordis.europa.eu/project/id/319167/reporting  [Last
                https://www.sae.org/standards/content/ams4999a  [Last  accessed on 2022 Dec 10].
                accessed on 2022 Dec 10].
                                                               122.  TC562 National Additive Manufacturing Standardization Technical
            110.  Committee F42 on Additive Manufacturing Technologies.   Committee. Available from: https://std.samr.gov.cn/search/
                Available from: https://www.astm.org/committee-f42 [Last   orgdetailviewcnf?data_id=da4c780fa8756d08e05397be0a0a6dff
                accessed on 2022 Dec 10].                          [Last accessed on 2022 Dec 10].
            111.  Committee F42 Subcommittees. Available from: https://www.  123.  Dubov A, Ruben S, 2022, Material development standards
                astm.org/get-involved/technical-committees/committee-f42/  and methods for additive manufacturing in construction
                subcommittee-f42 [Last accessed on 2022 Dec 10].   to meet building  code requirements  for  certification. In:
            112.  ASTM Committee F42, 2021, ASTM F3049-14 (2021)   Progress in Additive Manufacturing 2020. United States:
                Standard Guide for Characterizing Properties of Metal   ASTM International. p. 375–385.
                Powders Used for Additive Manufacturing Processes.      https://doi.org/10.1520/STP163720200103
                United States: ASTM.
                                                               124.  Erps T, Foshey M, Luković MK, et al., 2021, Accelerated
                https://doi.org/10.1520/F3049-14R21                discovery of 3D printing materials using data-driven
            113.  ASTM  Committee  F42,  2021,  ASTM  F3091/       multiobjective optimization. Sci Adv, 7: eabf7435.
                F3091M-14(2021) Standard Specification for Powder Bed      https://doi.org/10.1126/sciadv.abf7435
                Fusion of Plastic Materials. United States: ASTM.
                                                               125.  Goh GD, Huang X, Huang S,  et al., 2023, Data imputation
                https://doi.org/10.1520/F3091_F3091M-14R21         strategies for process optimization of laser powder bed fusion of
            114.  ASTM Committee F42, 2021, ASTM F3055-14a(2021)   Ti6Al4V using machine learning. Mater Sci Addit Manuf, 2: 50.
                Standard Specification for Additive Manufacturing Nickel      https://doi.org/10.36922/msam.50
                Alloy (UNS N07718) with Powder Bed Fusion. United
                States: ASTM.                                  126.  Bagheri A, Cremona C, 2020, Formulation of mix design for
                                                                   3D printing of geopolymers: A machine learning approach.
                https://doi.org/10.1520/F3055-14AR21
                                                                   Mater Adv, 1: 720–727.
            115.  ASTM Committee F42, 2021, ASTM F3056-14(2021) Standard      https://doi.org/10.1039/D0MA00036A
                Specification for Additive Manufacturing Nickel Alloy (UNS
                N06625) with Powder Bed Fusion. United States: ASTM.  127.  Analytical Investigation of Aerosol Jet Printing. Available from:
                                                                   https://www-tandfonline-com.libproxy1.nus.edu.sg/doi/full/10
                https://doi.org/10.1520/F3056-14R21
                                                                   .1080/02786826.2014.940439 [Last accessed on 2023 Sep 04].
            116.  ASTM Committee F42,  2021, ASTM  F2924-14(2021)   128.  Goh GL, Zhang H, Goh GD, et al., 2022, Multi-objective
                Standard Specification for Additive Manufacturing   optimization of intense pulsed light sintering process for
                Titanium-6 Aluminum-4 Vanadium with Powder Bed
                Fusion. United States: ASTM.                       aerosol jet printed thin film. Mater Sci Addit Manuf, 1: 10.
                                                                   https://doi.org/10.36922/msam.26
                https://doi.org/10.1520/F2924-14R21
                                                               129.  Jiang P, Ji Z, Zhang X,  et al., 2018, Recent advances in
            117.  ASTM Committee F42,  2021, ASTM  F3001-14(2021)
                Standard Specification for Additive Manufacturing   direct ink writing of electronic components and functional
                Titanium-6  Aluminum-4  Vanadium ELI  (Extra Low   devices. Prog Addit Manuf, 3: 65–86.
                Interstitial) with Powder Bed Fusion. United States: ASTM.     https://doi.org/10.1007/s40964-017-0035-x


            Volume 2 Issue 3 (2023)                         18                      https://doi.org/10.36922/msam.1587
   19   20   21   22   23   24   25   26   27   28   29