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Metals 2017,7, 91 39. Simonelli,M.; Tse,Y.; Tuck,C.Effect of thebuildorientationon theMechanicalProperties andFracture ModesofSLMTi-6Al-4V.Mater. Sci. Eng.A2014,616, 1–11. [CrossRef] 40. Qiu,C.;Adkins,N.;Attalah,M.Microstructureand tensilepropertiesof selectively laser-meltedandof HIPedlaser-meltedTi-6Al-4V.Mater. Sci. Eng.A2013,578, 230–239. [CrossRef] 41. Bartolomeu,F.; Faria, S.;Carvalho,O.; Pinto,E.;Alves,N.; Silva,F.S.;Miranda,G.Predictivemodels for physicalandmechanicalpropertiesofTi6Al4Vproducedbyselective lasermelting.Mater. Sci. Eng.A2016, 663, 181–192. [CrossRef] 42. Sigl,M.;Lutzmann,S.;Zaeh,M.F.TransientPhysicalEffects inElectronBeamSintering. InProceedingsof theSolidFreeformFabricationSymposium,Austin,Texas,7–9August2006. 43. Drescher,P.;Reimann,T.;Seitz,H. Investigationofpowderremovalofnet-structuredtitaniumpartsmade fromelectronbeammelting. Int. J.RapidManuf. 2014,4, 81–89. [CrossRef] 44. Fox, J.C.;Moylan,S.P.; Lane,B.M.Effectofprocessparameterson thesurface roughnessofoverhanging structures in laserpowderbedfusionadditivemanufacturing.ProcediaCIRP2016,45, 131–134. [CrossRef] 45. Triantaphyllou,A.;Giusca,C.L.;Macaulay,G.D.;Roerig,F.;Hoebel,M.;Leach,R.K.;Tomita,B.;Milne,K.A. Surface texturemeasurement for additivemanufacturing. Surf. Topogr. Metrol. Prop. 2015, 3, 024002. [CrossRef] 46. Kasperovich,G.;Hausmann, J. Improvementof fatigue resistanceandductilityofTiAl6V4 processedby selective lasermelting. J.Mater. Process. Technol. 2015,220, 202–214. [CrossRef] 47. Campanelli, S.L.;Contuzzi,N.;Ludovico,A.D.;Caiazzo,F.;Cardaropoli,F.; Sergi,V.Manufacturingand characterizationofTi6Al4Vlatticecomponentsmanufacturedbyselective lasermelting.Materials2014,7, 4803–4822. [CrossRef] 48. Murr, L.E.; Quinones, S.A.; Gaytan, S.M.; Lopez, M.I.; Rodela, A.; Martinez, E.Y.; Hernandez, D.H.; Martinez, E.; Medina, F.; Wicker, R.B.Microstructure andmechanical behavior of Ti-6Al-4Vproduced byrapid layermanufacturing, forbiomedical applications. J.Mech. Behav. Biomed.Mater. 2009,2, 20–32. [CrossRef] [PubMed] 49. Wu,M.-W.;Lai,P.-H.Thepositiveeffectofhot isostaticpressingonimprovingtheanisotropiesofbending and impact properties in selective lasermelted Ti6Al4V alloy. Mater. Sci. Eng. A 2016, 658, 429–438. [CrossRef] 50. Sattler, K.Lehrbuch der Statik: Theorie und ihreAnwendungen. Erster Band: Grundlagen und Fundamentale Berechnungsverfahren; SpringerVerlagGmbH:Heidelberg/Berlin,Germany,1969;p.132. 51. Leuders,S.;Thöne,M.;Riemer,A.;Niendorf,T.;Tröster,T.;Richard,H.A.;Maier,H.J.Onthemechanical behaviourof titaniumalloyTiAl6V4manufacturedbyselective lasermeltingFatigueresistanceandcrack growthperformance. Int. J.Fatigue2013,48, 300–307. [CrossRef] ©2017bytheauthors. LicenseeMDPI,Basel,Switzerland. Thisarticle isanopenaccess articledistributedunder the termsandconditionsof theCreativeCommonsAttribution (CCBY) license (http://creativecommons.org/licenses/by/4.0/). 73
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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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