Page 70 - ESAM-1-2
P. 70

Engineering Science in
            Additive Manufacturing                                          Multi-material additive manufacturing of metals



            96.  Xie J, Huang Z, Lu H, Zheng B,  Xu X, Lei J. Additive   Ni based powder reconditioning and reuse for LMD process.
               manufacturing of tantalum-zirconium alloy coating for   Phys Proc. 2016;83:769-777.
               corrosion and wear application by laser directed energy   112. Wang P, Nai MLS, Ng FL,  et al. Revealing mechanisms
               deposition on Ti6Al4V. Surf Coat Technol. 2021;411:127006.  underlying powder reusability of Ti-48Al-2Cr-2Nb
            97.  Rai AK, Srinivasulu B, Paul CB, et al. Development of thick   intermetallic in electron beam powder bed fusion process.
               SiC coating on thin wall tube of zircaloy-4 using laser based   Addit Manuf. 2022;59:103155.
               directed energy deposition technique.  Surf Coat Technol.   113. Tang Y, Zhou Y, Hoff T, Garon M, Zhao YF. Elastic modulus
               2020;398:126088.
                                                                  of 316 stainless steel lattice structure fabricated via binder
            98.  Michael Wilson J, Piya C, Shin YC, Zhao F, Ramani K.   jetting process. Mater Sci Technol. 2016;32(7):648-656.
               Remanufacturing of turbine blades by laser direct deposition   114. McGeehan O, Oldfield S, Wilks J, Mawby J, Linaker L.
               with its energy and environmental impact analysis. J Clean   Testing and Analysis of Additive Manufactured Parts from
               Prod. 2014;80:170-178.                             Partially Recycled Powder. MEng Thesi, Liverpool John
            99.  Saboori A, Aversa A, Marchese G, Biamino S, Lombardi M,   Moores University, Liverpool; 2018.
               Fino P. Application of directed energy deposition-based   115. Del Re F, Contaldi V, Astarita A, et al. Statistical approach
               additive manufacturing in repair. Appl Sci. 2019;9(16):3316.  for assessing the effect of powder reuse on the final
            100. DebRoy HL, Wei JS, Zuback T, et al. Additive manufacturing   quality of AlSi10Mg parts produced by laser powder bed
               of metallic components-Process, structure and properties.   fusion additive manufacturing.  Int J Adv Manuf Technol.
               Prog Mater Sci. 2018;92:112-224.                   2018;97(5-8):2231-2240.
            101. Dhanola A, Prasad DS. A comprehensive review of wire arc   116. Seyda V, Kaufmann N, Emmelmann C. Investigation of
               additive manufacturing for metallic functionally graded   aging processes of Ti-6Al-4 V powder material in laser
               materials. Eng Res Express. 2024;6(4):042501.      melting. Phys Proc. 2012;39:425-431.
            102. Bandyopadhyay A, Heer B. Additive manufacturing of multi-  117. Carroll PA, Pinkerton A, Allen J, et al. The effect of powder
               material structures. Mater Sci Eng R Rep. 2018;129:1-16.  recycling in  direct  metal  laser  deposition on  powder  and
                                                                  manufactured part characteristics. In:  Proceedings of the
            103. Vimal KEK, Naveen Srinivas M, Rajak S. Wire arc additive   AVT-139 Specialists Meeting on Cost Effective Manufacture
               manufacturing of aluminium alloys: A review. Mater Today   via Net Shape Processing; 2006. p. 1-8.
               Proc. 2021;41:1139-1145.
                                                               118. Lanzutti A, Marin E. The challenges and advances
            104. Ding D, Pan Z, Cuiuri D, Li H. Wire-feed additive   in recycling/re-using powder for metal 3D printing:
               manufacturing of metal components: Technologies,   A comprehensive review. Metals. 2024;14(8):886.
               developments and future interests. Int J Adv Manuf Technol.
               2015;81(1-4):465-481.                           119. Mostafaei A, Zhao C, He Y, et al. Defects and anomalies in
                                                                  powder bed fusion metal additive manufacturing. Curr Opin
            105. Chen Z, Yuan L, Pan Z, et al. A comprehensive review and   Solid State Mater Sci. 2022;26(2):100974.
               future perspectives of simulation approaches in wire arc
               additive manufacturing (WAAM).  Int J Extreme Manuf.   120. Everton SK, Hirsch M, Stravroulakis P, Leach RK,
               2025;7(2):022016.                                  Clare AT. Review of in-situ process monitoring and in-situ
                                                                  metrology for metal additive manufacturing. Mater Design.
            106. Reichardt A, Shapiro AA, Otis R,  et al. Advances in   2016;95:431-445.
               additive manufacturing of metal-based functionally graded
               materials. Int Mater Rev. 2021;66(1):1-29.      121. Grasso  M,  Colosimo  BM.  Process  defects  and  in situ
                                                                  monitoring methods in metal powder bed fusion: A review.
            107. Akinlabi ET, Akinlabi SA. Friction stir welding of dissimilar   Meas Sci Technol. 2017;28(4):044005.
               metals. In: Advances in Friction-Stir Welding and Processing.
               Netherlands: Elsevier; 2014. p. 241-293.           doi: 10.1088/1361-6501/aa5c4f
            108. Sun Z, Karppi R. The application of electron beam welding   122.  Sahasrabudhe  H,  Harrison  R,  Carpenter  C,
               for the joining of dissimilar metals: An overview. J Mater   Bandyopadhyay  A. Stainless steel to titanium bimetallic
               Process Technol. 1996;59(3):257-267.               structure using LENS™. Addit Manuf. 2015;5:1-8.
                                                                  doi: 10.1016/j.addma.2014.10.002
            109. Kah P, Shrestha M, Martikainen J. Trends in joining dissimilar
               metals by welding. Appl Mechan Mater. 2013;440:269-276.  123. Tey CF, Tan X, Sing SL, Yeong WY. Additive manufacturing
            110. Powell D, Rennie AEW, Geekie L, Burns N. Understanding   of multiple materials by selective laser melting: Ti-alloy to
               powder degradation in metal additive manufacturing to   stainless steel via a Cu-alloy interlayer.  Addit Manufact.
               allow the upcycling of recycled powders.  J  Clean Prod.   2020;31:100970.
               2020;268:122077.                                   doi: 10.1016/j.addma.2019.100970
            111. Renderos M, Girot F, Lamikiz A, Torregaray A, Saintier N.   124. Watanabe I, Sun Z, Kitano H, Goto K. Multiscale analysis of


            Volume 1 Issue 2 (2025)                         38                         doi: 10.36922/ESAM025180010
   65   66   67   68   69   70   71   72   73   74   75