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Metals 2017,7, 64 25. Lu, Y.; Wu, S.; Gan, Y.; Huang, T.; Yang, C.; Junjie, L.; Lin, J. Study on themicrostructure,mechanical propertyandresidualstressofSLMInconel-718alloymanufacturedbydiffering islandscanningstrategy. Opt. LaserTechnol.2015,75, 197–206. [CrossRef] 26. Zhou,X.;Li,K.;Zhang,D.;Liu,X.;Ma, J.;Liu,W.;Shen,Z.Textures formedinaCoCrMoalloybyselective lasermelting. J.Alloy. Compd. 2015,631, 153–164. [CrossRef] 27. Hedberg,Y.S.;Qian,B.;Shen,Z.;Virtanen,S.;OdnevallWallinder, I. InvitrobiocompatibilityofCoCrMo dentalalloys fabricatedbyselective lasermelting.Dent.Mater. 2014,30, 525–534. [CrossRef] [PubMed] 28. Zietala,M.;Durejko,T.;Polanski,M.;Kunce, I.;Plocinski,T.;Zielenski,W.;Lazinska,M.;Stepniowski,W.; Czujko,T.;Kurzydlowski,K.J.; et al. Themicrostructure,mechanicalpropertiesandcorrosionresistance of 316L stainless steel fabricatedusing laser engineerednet shaping. Mater. Sci. Eng. A 2016, 677, 1–10. [CrossRef] 29. Zhong, Y.; Liu, L.; Wikman, S.; Cui, D.; Shen, Z. Intragranular cellular segregation network structure strengthening316Lstainless steelpreparedbyselective lasermelting. J.Nucl. Mater. 2016,470, 170–178. [CrossRef] 30. Gustmann,T.;Neves,A.;KĂŒhn,U.;Gargarella,P.;Kiminami,C.S.;Bolfarini,C.;Eckert, J.;Pauly,S. InïŹ‚uence ofprocessingparametersonthefabricationofaCu-Al-Ni-Mnshape-memoryalloybyselective lasermelting. Addit.Manuf. 2016,11, 23–31. [CrossRef] 31. Marya,M.; Singh,V.;Marya, S.;Hascoet, J.Y.MicrostructuralDevelopmentandTechnicalChallenges in LaserAdditiveManufacturing:CaseStudywitha316LIndustrialPart.Metall.Mater. Trans. BProcessMetall. Mater. Process. Sci. 2015,46, 1654–1665. [CrossRef] 32. Liu, Z.H.; Zhang, D.Q.; Sing, S.L.; Chua, C.K.; Loh, L.E. Interfacial characterization of SLM parts in multi-materialprocessing:Metallurgicaldiffusionbetween316Lstainless steel andC18400copperalloy. Mater. Charact. 2014,94, 116–125. [CrossRef] 33. Dadbakhsh,S.;Hao,S.EffectofAlalloysonselective lasermeltingbehaviourandmicrostructureof insitu formedparticle reinforcedcomposites. J.Alloy. Compd. 2012,541, 328–334. [CrossRef] 34. Sames,W.J.;List,F.A.;Pannala,S.;Dehoff,R.R.;Babu,S.S.Themetallurgyandprocessingscienceofmetal additivemanufacturing. Int.Mater. Rev. 2016,6608, 1–46. [CrossRef] 35. King,W.E.;Barth,H.D.;Castillo,V.M.;Gallegos,G.F.;Gibbs, J.W.;Hahn,D.E.;Kamath,C.;Rubenchik,A.M. Observationofkeyhole-modelasermelting in laserpowder-bedfusionadditivemanufacturing. J.Mater. Process. Technol. 2014,214, 2915–2925. [CrossRef] 36. Körner,C.;Bauereiß,A.;Attar,E.Fundamental consolidationmechanismsduringselectivebeammeltingof powders.Model. Simul.Mater. Sci. Eng. 2013,21, 1–18. [CrossRef] 37. Tammas-Williams,S.;Zhao,H.;LĂ©onard,F.;Derguti,F.;Todd, I.;Prangnell,P.B.XCTanalysisof the inïŹ‚uence ofmelt strategiesondefectpopulation inTi-6Al-4VcomponentsmanufacturedbySelectiveElectronBeam Melting.Mater. Charact. 2015,102, 47–61. [CrossRef] 38. Frazier,W.E.Directdigitalmanufacturingofmetallic components:Visionandroadmap. InProceedingsof the21stAnnual InternationalSolidFreeformFabricationSymposium,Austin,TX,USA,9–11August2010; pp.717–732. 39. Campanelli,S.L.;Contuzzi,N.;Angelastro,A.;Ludovico,A.D.CapabilitiesandPerformancesoftheSelective LaserMeltingProcess. InNewTrends inTechnologies:Devices,Computer,Communicationand IndustrialSystems; Er,M.J.,Ed.; InTechEurope:Rijeka,Croatia,2010;pp.233–252. 40. Qiu,C.;Panwisawas,C.;Ward,M.;Basoalto,H.C.;Brooks, J.W.;Attallah,M.M.OntheroleofmeltïŹ‚owinto thesurfacestructureandporositydevelopmentduringselective lasermelting.ActaMater. 2015,96, 72–79. [CrossRef] 41. Maskery, I.;Aboulkhair,N.T.;CorïŹeld,M.R.;Tuck,C.;Clare,A.T.;Leach,R.K.;Wildman,R.D.;Ashcroft, I.A.; Hague,R.J.M.QuantiïŹcationandcharacterisationofporosity inselectively lasermeltedAl-Si10-Mgusing X-raycomputedtomography.Mater. Charact. 2016,111, 193–204. [CrossRef] 42. Kang,N.;Coddet,P.;Liu,Q.;Liao,H.;Coddet,C. In-situTiB/nearαTimatrixcompositesmanufacturedby selective lasermelting.Addit.Manuf. 2016,11, 1–6. [CrossRef] 43. Niendorf, T.; Leuders, S.; Riemer, A.; Richard,H.A.; Tröster, T.; Schwarze, D.Highly anisotropic steel processedbyselective lasermelting. Metall. Mater. Trans. BProcessMetall. Mater. Process. Sci. 2013, 44, 794–796. [CrossRef] 129
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3D Printing of Metals
Titel
3D Printing of Metals
Autor
Manoj Gupta
Herausgeber
MDPI
Ort
Basel
Datum
2017
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03842-592-2
Abmessungen
17.0 x 24.4 cm
Seiten
170
Schlagwörter
3D printing, additive manufacturing, electron beam melting, selective laser melting, laser metal deposition, aluminum, titanium, magnesium, composites
Kategorien
Naturwissenschaften Chemie
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3D Printing of Metals