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Mooraj et al. J Mater Inf 2023;3:4  https://dx.doi.org/10.20517/jmi.2022.41      Page 43 of 45

                    synthesized by laser-powder bed fusion. Addit Manuf 2020;35:101337.  DOI
               155.      Lu Y, Su S, Zhang S, et al. Controllable additive manufacturing of gradient bulk metallic glass composite with high strength and
                    tensile ductility. Acta Mater 2021;206:116632.  DOI
               156.      Ren J, Zhang Y, Zhao D, et al. Strong yet ductile nanolamellar high-entropy alloys by additive manufacturing. Nature 2022;608:62-8.
                    DOI  PubMed
               157.      Zhang S, Hou P, Mooraj S, Chen W. Printability of Zr  Ti  Cu  Ni  Be   metallic glass on steel by laser additive manufacturing:
                                                       41.2  13.8  12.5  10.0  22.5
                    a single-track study. Surf Coat Technol 2021;428:127882.  DOI
               158.      Wang YM, Voisin T, McKeown JT, et al. Additively manufactured hierarchical stainless steels with high strength and ductility. Nat
                    Mater 2018;17:63-71.  DOI  PubMed
               159.      Chen W, Voisin T, Zhang Y, et al. Microscale residual stresses in additively manufactured stainless steel.  Nat Commun
                    2019;10:4338.  DOI
               160.      Li Z, Ludwig A, Savan A, Springer H, Raabe D. Combinatorial metallurgical synthesis and processing of high-entropy alloys. J
                    Mater Res 2018;33:3156-69.  DOI
               161.      Santa-aho S, Kiviluoma M, Jokiaho T, et al. Additive manufactured 316L stainless-steel samples: microstructure, residual stress and
                    corrosion characteristics after post-processing. Metals 2021;11:182.  DOI
               162.      Zhang C, Chen F, Huang Z, et al. Additive manufacturing of functionally graded materials: a review.  Mater Sci Eng A
                    2019;764:138209.  DOI
               163.      del Val J, Arias-gonzález F, Barro O, et al. Functionally graded 3D structures produced by laser cladding. Procedia Manuf
                    2017;13:169-76.  DOI
               164.      Gwalani B, Gangireddy S, Shukla S, et al. Compositionally graded high entropy alloy with a strong front and ductile back. Mater
                    Today Commun 2019;20:100602.  DOI
               165.      Li L, Wang J, Lin P, Liu H. Microstructure and mechanical properties of functionally graded TiC /Ti6Al4V composite fabricated by
                                                                                   p
                    laser melting deposition. Ceram Int 2017;43:16638-51.  DOI
               166.      Pegues JW, Melia MA, Puckett R, Whetten SR, Argibay N, Kustas AB. Exploring additive manufacturing as a high-throughput
                    screening tool for multiphase high entropy alloys. Addit Manuf 2021;37:101598.  DOI
               167.      Wen Y, Zhang B, Narayan RL, et al. Laser powder bed fusion of compositionally graded CoCrMo-Inconel 718. Addit Manuf
                    2021;40:101926.  DOI
               168.      Shishkovsky I, Kakovkina N, Scherbakov V. Rapid TMC laser prototyping: Compositional and phase-structural sustainability via
                    combinatorial design of titanium-based gradient alloy reinforced by nano-sized TiC or TiB  ceramics. SPIE 2018;10523:172-7.  DOI
                                                                              2
               169.      Traxel KD, Bandyopadhyay A. Influence of in situ ceramic reinforcement towards tailoring titanium matrix composites using laser-
                    based additive manufacturing. Addit Manuf 2020;31:101004.  DOI  PubMed  PMC
               170.      Gong X, Yabansu YC, Collins PC, Kalidindi SR. Evaluation of Ti-Mn alloys for additive manufacturing using high-throughput
                    experimental assays and gaussian process regression. Materials 2020;13:4641.  DOI  PubMed  PMC
               171.      Li M, Flores KM. Laser processing as a high-throughput method to investigate microstructure-processing-property relationships in
                    multiprincipal element alloys. J Alloys Compd 2020;825:154025.  DOI
               172.      Teh WH, Chaudhary V, Chen S, et al. High throughput multi-property evaluation of additively manufactured Co-Fe-Ni materials
                    libraries. Addit Manuf 2022;58:102983.  DOI
               173.      Gwalani B, Soni V, Waseem OA, Mantri SA, Banerjee R. Laser additive manufacturing of compositionally graded AlCrFeMoVx (x =
                     0 to 1) high-entropy alloy system. Opt Laser Technol 2019;113:330-7.  DOI
               174.      Zhao Y, Lau KB, Teh WH, et al. Compositionally graded CoCrFeNiTi high-entropy alloys manufactured by laser powder bed fusion:
                    a combinatorial assessment. J Alloys Compd 2021;883:160825.  DOI
               175.      Yu Z, Zheng W, Li Z, et al. Accelerated exploration of TRIP metallic glass composite by laser additive manufacturing. J Mater Sci
                    Technol 2021;78:68-73.  DOI
               176.      Wu Y, Wang H, Liu X, et al. Designing bulk metallic glass composites with enhanced formability and plasticity. J Mater Sci Technol
                    2014;30:566-75.  DOI
               177.      Zhai L, Lu Y, Zhao X, Wang L, Lu X. High-throughput screening of laser additive manufactured metallic glass via ultrasonic wave.
                    Sci Rep 2019;9:17660.  DOI  PubMed  PMC
               178.      Tsai P, Flores KM. High-throughput discovery and characterization of multicomponent bulk metallic glass alloys. Acta Mater
                    2016;120:426-34.  DOI
               179.      Tsai P, Flores KM. A combinatorial strategy for metallic glass design via laser deposition. Intermetallics 2014;55:162-6.  DOI
               180.      Islam Z, Nelaturu P, Thoma DJ. A dimensionless number for high-throughput design of multi-principal element alloys in directed
                    energy deposition. Appl Phys Lett 2021;119:231901.  DOI
               181.      Zhang W, Liu L, Peng S, et al. The tensile property and notch sensitivity of AlCoCrFeNi  high entropy alloy with a novel “steel-
                                                                               2.1
                    frame” eutectic microstructure. J Alloys Compd 2021;863:158747.  DOI
               182.      Joseph J, Imran M, Hodgson P, Barnett M, Fabijanic D. Towards the large-scale production and strength prediction of near-eutectic
                    Al CoCrFeNi  alloys by additive manufacturing. Manuf Lett 2020;25:16-20.  DOI
                      x      2.1
               183.      Moorehead M, Nelaturu P, Elbakhshwan M, et al. High-throughput ion irradiation of additively manufactured compositionally
                    complex alloys. J Nucl Mater 2021;547:152782.  DOI
               184.      Miracle D, Majumdar B, Wertz K, Gorsse S. New strategies and tests to accelerate discovery and development of multi-principal
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