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Metals 2017,7, 2 87. Niu,H.;Chang, I.Selective lasersinteringofgasandwateratomizedhighspeedsteelpowders.Scr.Mater. 1999,41, 25–30. [CrossRef] 88. Simchi,A.Theroleofparticle sizeon the laser sinteringof ironpowder.Metall. Mater. Trans. B2004,35, 937–948. [CrossRef] 89. Liu,B.;Wildman,R.;Tuck,C.;Ashcroft, I.;Hague,R. Investigation theeffectofparticle sizedistribution onprocessingparameters optimisation in selective lasermeltingprocess. In International Solid Freeform FabricationSymposium:AnAdditiveManufacturingConference;UniversityofTexas:Austin,TX,USA,2011; pp.227–238. 90. Kumar, S. 10.05—Selective Laser Sintering/Melting A2—Hashmi, Saleem. InComprehensiveMaterials Processing;Batalha,G.F.,Tyne,C.J.V.,Yilbas,B.,Eds.;Elsevier:Oxford,UK,2014;pp.93–134. 91. Olatunde Olakanmi, E.; Dalgarno, K.W.; Cochrane, R.F. Laser sintering of blended Al-Si powders. RapidPrototyp. J.2012,18, 109–119. [CrossRef] 92. Bourell,D.;Stucker,B.;Spierings,A.;Herres,N.;Levy,G. InïŹ‚uenceof theparticlesizedistributiononsurface qualityandmechanicalproperties inAMsteelparts.RapidPrototyp. J.2011,17, 195–202. 93. Glardon,R.; Karapatis,N.; Romano,V.; Levy,G. InïŹ‚uenceofNd:YAGparameters on the selective laser sinteringofmetallicpowders.CIRPAnn.Manuf. Technol. 2001,50, 133–136. [CrossRef] 94. Cao,X.; Jahazi,M.; Immarigeon, J.;Wallace,W.Areviewof laserweldingtechniques formagnesiumalloys. J.Mater. Process. Technol. 2006,171, 188–204. [CrossRef] 95. Tolochko,N.K.;Khlopkov,Y.V.;Mozzharov,S.E.; Ignatiev,M.B.;Laoui,T.;Titov,V.I.Absorptanceofpowder materials suitable for lasersintering.RapidPrototyp. J.2000,6, 155–161. [CrossRef] 96. Steen,W.Lasermaterialprocessing—Anoverview. J.Opt.APureAppl.Opt. 2003,5, S3. [CrossRef] 97. John,F.Ready: LIAHandbookofLaserMaterialsProcessing;Laser InstituteofAmericaMagnoliaPublishing Inc.:Orlando,FL,USA,2001;pp.181–183. 98. Shen,N.;Chou,K.Thermalmodelingofelectronbeamadditivemanufacturingprocess: Powdersintering effects. InProceedingsof theASME2012InternationalManufacturingScienceandEngineeringConference collocatedwith the40thNorthAmericanManufacturingResearchConferenceand inparticipationwith the InternationalConferenceonTribologyMaterialsandProcessing,NotreDame, IN,USA,4–8June2012; pp.287–295. 99. Selcuk,C.Lasermetaldepositionforpowdermetallurgyparts.PowderMetall. 2011,54, 94–99. 100. Basu,B.;Date,A.RapidsolidiïŹcationfollowing lasermeltingofpuremetals—I.StudyofïŹ‚owïŹeldandrole ofconvection. Int. J.HeatMassTransf. 1992,35, 1049–1058. [CrossRef] 101. Bontha,S.;Klingbeil,N.W.;Kobryn,P.A.;Fraser,H.L.ThermalprocessmapsforpredictingsolidiïŹcation microstructure in laser fabricationof thin-wall structures. J.Mater. Process. Technol. 2006, 178, 135–142. [CrossRef] 102. Dahle,A.K.;Lee,Y.C.;Nave,M.D.;Schaffer,P.L.; StJohn,D.H.Developmentof theas-castmicrostructure in magnesium-aluminiumalloys. J.LightMet. 2001,1, 61–72. [CrossRef] 103. Campbell, J.Castings;Butterworth-Heinemann:Oxford,UK,2003. 104. Aarstad,K.ProtectiveFilmsonMoltenMagnesium. Ph.D.Thesis,NorwegianUniversityofScienceand Technology,Trondheim,Norway,May2004. 105. Louvis,E.;Fox,P.; Sutcliffe,C.J. Selective lasermeltingofaluminiumcomponents. J.Mater. Process. Technol. 2011,211, 275–284. [CrossRef] 106. Collur, M.; Paul, A.; DebRoy, T. Mechanism of alloying element vaporization during laser welding. Metall. Trans. B1987,18, 733–740. [CrossRef] 107. Sanders,P.;Keske, J.;Leong,K.;Kornecki,G.HighpowerNd:YAGandCO2 laserweldingofmagnesium. J.LaserAppl.1999,11, 96–103. [CrossRef] 108. Liu,Y.;Li,S.;Wang,H.;Hou,W.;Hao,Y.;Yang,R.;Sercombe,T.B.;Zhang,L.C.Microstructure,defectsand mechanicalbehaviorofbeta-typetitaniumporousstructuresmanufacturedbyelectronbeammeltingand selective lasermelting.ActaMater. 2016,113, 56–67. [CrossRef] 109. Asgharzadeh,H.; Simchi,A.Effectof sinteringatmosphereandcarboncontenton thedensiïŹcationand microstructure of laser-sinteredM2 high-speed steel powder. Mater. Sci. Eng. A 2005, 403, 290–298. [CrossRef] 110. Gu,D.;Shen,Y.Ballingphenomenaduringdirect lasersinteringofmulti-componentCu-basedmetalpowder. J.Alloy. Compd. 2007,432, 163–166. [CrossRef] 36
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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