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Materials Science in Additive Manufacturing                             LPBF of Ti-Al-graded multi-materials



            Further disclosure                                    doi: 10.36922/msam.1587

            The authors hereby confirm that this original research   11.  Zhang C, Chen F, Huang ZF, et al. Additive manufacturing
            article is an original research work and has not been   of functionally graded materials: A review. Mat Sci Eng A
                                                                  Struct. 2019;764:138209.
            presented in conference previously and is not uploaded to
            any preprint server. It has the full consent of all authors.     doi: 10.1016/j.msea.2019.138209
                                                               12.  Yan L, Chen Y, Liou F. Additive manufacturing of
            References                                            functionally graded metallic materials using  laser metal
            1.   Tyagi SA, Manjaiah M. Laser additive manufacturing of   deposition. Addit Manuf. 2020;21:100901.
               titanium-based functionally graded materials: A  review.      doi: 10.1016/j.addma.2019.100901
               J Mater Eng Perform. 2022;31(8):6131-6148.
                                                               13.  Chen WY, Zhang X, Li M. Laser powder bed fusion of Inconel
               doi: 10.1007/s11665-022-07149-w                    718 on 316 stainless steel. Addit Manuf. 2020;36:101500.
            2.   Yan L, Chen Y, Liou F. Additive manufacturing of multi-     doi: 10.1016/j.addma.2020.101500
               material structures. Mater Sci Eng R Rep. 2018;129:1-16.
                                                               14.  Chen J, Yang Y, Song C. Interfacial microstructure and
               doi: 10.1016/j.mser.2018.04.001                    mechanical properties of 316L/CuSn10 multi-material
                                                                  bimetallic structure fabricated by selective laser melting.
            3.   Yao L, Xiao Z, Huang S, et al. The formation mechanism of
               metal-ceramic interlayer interface during laser powder bed   Mater Sci Eng A Struct. 2019;752:75-85.
               fusion. Virtual Phys Prototy. 2023;18:2235324.     doi: 10.1016/j.msea.2019.02.097
               doi: 10.1080/17452759.2023.2235324              15.  Zhang Y, Bandyopadhyay A. Direct fabrication of
                                                                  compositionally graded Ti-Al2O3 multi-material structures
            4.   Mehrpouya M, Tuma D, Vaneker T, Afrasiabi M,     using Laser Engineered Net Shaping.  Addit Manuf.
               Bambach  M,  Gibson  I.  Multimaterial  powder  bed  fusion   2018;21:104-111.
               techniques. Rapid Prototyp J. 2022;28(11):1-19.
                                                                  doi: 10.1016/j.addma.2018.03.001
               doi: 10.1108/RPJ-01-2022-0014
                                                               16.  Wei C, Liu L, Cao H,  et al. Cu10Sn to Ti6Al4V bonding
            5.   Heidarzadeh A, Mironav S, Kaibyshev R, et al. Friction stir   mechanisms in laser-based  powder  bed fusion multiple
               welding/processing of metals and alloys: A comprehensive   material additive manufacturing with different build
               review on microstructural evolution.  Prog Mater Sci.   strategies. Addit Manuf. 2022;51:102588.
               2021;117:100752.
                                                                  doi: 10.1016/j.addma.2021.102588
               doi: 10.1016/j.pmatsci.2020.100752
                                                               17.  Sing SL, Huang S, Goh GD. Additive manufacturing of
            6.   Gu  D,  Shi  X,  Poprawe  R,  Bourell  DL,  Setchi  R,  Zhu  J.   multiple materials by selective laser melting: Ti alloy
               Material-structure-performance  integrated  laser-metal  to stainless steel via a Cu-alloy interlayer.  Addit  Manuf.
               additive manufacturing. Science. 2021;372(6545):eabg1487.  2020;31:100970.
               doi: 10.1126/science.abg1487                       doi: 10.1016/j.addma.2019.100970
            7.   Zhai X, Jin L, Jiang J. A survey of additive manufacturing   18.  Zhang J, Wang X, Gao J. Additive manufacturing of
               reviews. Mater Sci Addit Manuf. 2022;1(4):21.      Ti-6Al-4V/Al-Cu-Mg multi-material structures with a Cu
               doi: 10.18063/msam.v1i4.21                         interlayer. Int J Mech Sci. 2023;256:108477.
            8.   Wei C, Li L, Zhang X, et al. 3D printing of multiple metallic      doi: 10.1016/j.ijmecsci.2023.108477
               materials via modified selective laser melting.  CIRP Ann.   19.  Tan C, Chew Y, Bi G, et al. Additive manufacturing of steel-
               2018;67(1):245-248.                                copper functionally graded material with ultrahigh bonding
               doi: 10.1016/j.cirp.2018.04.096                    strength. J Mater Sci Technol. 2021;72:217-222.
            9.   Sing SL, Huang S, Goh GD. Emerging metallic systems for      doi: 10.1016/j.jmst.2020.07.044
               additive  manufacturing:  In-situ  alloying  and  multi-metal   20.  Wei C, Zhao Z, Tang J,  et al. Effect of interface-layer
               processing in laser powder bed fusion. Prog Mater Sci.   process parameters on  forming  quality  of 316L/CuSn10
               2021;119:100795.                                   bimetals fabricated via laser powder bed fusion. Mater Lett.
               doi: 10.1016/j.pmatsci.2021.100795                 2023;336:133896.
            10.  Liu Y, Sing SL. A  review of advances in additive      doi: 10.1016/j.matlet.2023.133896
               manufacturing and the integration of high-performance   21.  Demir AG, Kim J, Caltabissetta F,  et al. Enabling multi-
               polymers, alloys, and their composites.  Mater Sci Addit   material gradient structure in laser powder bed fusion.
               Manuf. 2023;2(3):1587.                             J Mater Process Technol. 2022 301: 117439.


            Volume 3 Issue 2 (2024)                         13                             doi: 10.36922/msam.3088
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