Page 69 - MSAM-3-1
P. 69

Materials Science in Additive Manufacturing                      Customized scans and dwell time on AM 316L



               doi: 10.2139/ssrn.4529173                          time and build height on resulting properties of 316L
                                                                  stainless steel processed by laser powder bed fusion. Addit
            11.  Veiga F, Arizmendi M, Suarez A, Bilbao J, Uralde V. Different
               path strategies for directed energy deposition of crossing   Manuf. 2020;32:101080.
               intersections  from  stainless  steel  SS316L-Si.  J  Manuf      doi: 10.1016/j.addma.2020.101080
               Processes. 2022;84:953-964.
                                                               21.  Denlinger ER, Heigel JC, Michaleris P, Palmer TA. Effect
               doi: 10.1016/j.jmapro.2022.10.039                  of  inter-layer  dwell  time  on  distortion  and  residual  stress
            12.  Amar E, Popov V, Sharma VM, Andreev Batat S, Halperin   in additive manufacturing of titanium and nickel alloys.
               D,  Eliaz  N. Response surface  methodology (RSM)   J Mater Process Technol. 2015;215:123-131.
               approach for optimizing the processing parameters of      doi: 10.1016/j.jmatprotec.2014.07.030
               316L SS in directed energy deposition.  Materials (Basel).   22.  ASTM.  Standard Guide for Additive Manufacturing of
               2023;16(23):7253.
                                                                  Metal-Finished Part Properties-Methods for Relative Density
               doi: 10.3390/ma16237253                            Measurement 1. Vol. 1. United States: ASTM; 2023. p. 1-6.
            13.  Izadi M, Farzaneh A, Gibson I, Rolfe B. The Effect of Process      doi: 10.1520/F3637-23.2
               Parameters and Mechanical Properties of Direct Energy   23.  He BB, Preckwinkel U, Smith KL. Stress and texture analysis
               Deposited Stainless Steel 316. In: Solid Freeform Fabrication   with two-dimensional x-ray diffraction.  Mater Sci Forum.
               2017: Proceedings of the 28   Annual International Solid
                                    th
               Freeform Fabrication Symposium-an Additive Manufacturing   2002;404-407:109-114.
               Conference; 2020. p. 1058-1067.                    doi: 10.4028/www.scientific.net/msf.404-407.109
            14.  Kuzminova YO, Firsov DG, Konev SD, et al. Structure control   24.  Rupert AN, McCausland PJ, Flemming RL. Ordinary
               of 316L stainless steel through an additive manufacturing.   chondrite  shock  stage  quantification  using  in situ
               Lett Mater. 2019;9(4):551-555.                     2-D X-ray diffraction of olivine.  Meteorit  Planet  Sci.
                                                                  2020;55(10):2224-2240.
               doi: 10.22226/2410-3535-2019-4-551-555
                                                                  doi: 10.1111/maps.13572
            15.  Karlapudy SP, Nancharaiah T, Rao VVS. Influence of
               different  build  orientation  and  laser  scan  strategies  on   25.  Dzhurinskiy D, Babu  A, Pathak P, Elkin  A, Dautov S,
               surface quality, mechanical and material characteristics of   Shornikov P. Microstructure and wear properties of
               18 Ni-300 maraging steel processed through DMLS. Aust J   atmospheric  plasma-sprayed  Cr3C2-NiCr  composite
               Mech Eng. 2021;21(4):1381-1395.                    coatings. Surf Coatings Technol. 2021;428:127904.
               doi: 10.1080/14484846.2021.2007620                 doi: 10.1016/j.surfcoat.2021.127904
            16.  Liu M, Kumar A, Bukkapatnam S, Kuttolamadom M.   26.  Lama A, Sarvesha R, Garcia D, et al. Macroscale property
               A  review of the anomalies in directed energy deposition   assessment and indentation characteristics of thick
               (DED)  processes  and  potential  solutions-part quality  and   section friction stir welded AL 5083.  Mater Sci Eng A.
               defects. Procedia Manuf. 2021;53:507-518.          2023;880:145306.
               doi: 10.1016/j.promfg.2021.06.093                  doi: 10.1016/j.msea.2023.145306
            17.  Ribeiro KSB, Mariani FE, Coelho RT. A study of different   27.  Thompson A, Maskery I, Leach RK. X-ray computed
               deposition strategies in direct energy deposition (DED)   tomography for additive manufacturing: A review. Meas Sci
               processes. Procedia Manuf. 2020;48:663-670.        Technol. 2016;27(7):072001.
               doi: 10.1016/j.promfg.2020.05.158                  doi: 10.1088/0957-0233/27/7/072001
            18.  Yadollahi A, Shamsaei N, Thompson SM, Seely DW. Effects of   28.  Zheng B, Haley JC, Yang N,  et al. On the evolution of
               process time interval and heat treatment on the mechanical   microstructure and defect control in 316L SS components
               and microstructural properties of direct laser deposited   fabricated via directed energy deposition. Mater Sci Eng A.
               316L stainless steel. Mater Sci Eng A. 2015;644:171-183.  2019;764:138243.
               doi: 10.1016/j.msea.2015.07.056                    doi: 10.1016/j.msea.2019.138243
            19.  Sciammarella FM, Najafabadi BS. Processing parameter doe   29.  Suwas S, Vikram RJ. Texture evolution in metallic materials
               for 316l using directed energy deposition. J Manuf Mater   during additive manufacturing: A review. Trans Indian Natl
               Process. 2018;2(3):61.                             Acad Eng. 2021;6(4):991-1003.
               doi: 10.3390/jmmp2030061                           doi: 10.1007/s41403-021-00271-6
            20.  Mohr G, Altenburg SJ, Hilgenberg K. Effects of inter layer   30.  Kim FH, Moylan SP. Literature review of metal additive




            Volume 3 Issue 1 (2024)                         10                      https://doi.org/10.36922/msam.2676
   64   65   66   67   68   69   70   71   72   73   74