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Metals 2017,7, 2 15. Ramirez, J.M.;Hurt,W.C.Boneremodeling inperiodontal lesions. J.Periodontol. 1977,48, 74–77. [CrossRef] [PubMed] 16. Staiger,M.P.; Pietak,A.M.; Huadmai, J.; Dias,G.Magnesiumand its alloys as orthopedic biomaterials: Areview.Biomaterials2006,27, 1728–1734. [CrossRef] [PubMed] 17. Alvarez,K.;Nakajima,H.Metallic scaffolds forboneregeneration.Materials2009,2, 790–832. [CrossRef] 18. Agarwal,S.;Curtin, J.;Duffy,B.; Jaiswal,S.Biodegradablemagnesiumalloys fororthopaedicapplications: Areviewoncorrosion, biocompatibilityandsurfacemodiïŹcations. Mater. Sci. Eng. C2016,68, 948–963. [CrossRef] [PubMed] 19. Gehrmann,R.;Frommert,M.M.;Gottstein,G.Textureeffectsonplasticdeformationofmagnesium.Mater.Sci. Eng.A2005,395, 338–349. [CrossRef] 20. Kulekci,M.K.Magnesiumanditsalloysapplications inautomotive industry. Int. J.Adv.Manuf. Technol. 2008,39, 851–865. [CrossRef] 21. Bettles,C.J.Magnesiumpowdermetallurgy: Processandmaterialsopportunities. J.Mater. Eng. Perform. 2008,17, 297–301. [CrossRef] 22. Tandon, R.; Madan,D. Emerging applications formagnesiumalloy powders. PowderMetall. 2014, 57, 236–241. [CrossRef] 23. Kawamura,Y.;Hayashi,K.; Inoue,A.;Masumoto,T.RapidlysolidifiedpowdermetallurgyMg97Zn1Y2Alloys withexcellent tensileyieldstrengthabove600MPa.Mater. Trans. 2001,42, 1171–1174. [CrossRef] 24. Tandon,R.Potential forAdvancedMagnesiumAlloyPowders inAerospaceApplications. InProceedings of the 24th Advanced Aerospace Materials and Processes (AeroMat) Conference and Exposition, Bellevue,WC,USA,2–5April2013. 25. Osakada,K.;Shiomi,M.Flexiblemanufacturingofmetallicproductsbyselective lasermeltingofpowder. Int. J.Mach. ToolsManuf. 2006,46, 1188–1193. [CrossRef] 26. Riza, S.; Masood, S.; Wen, C. Laser-assisted additivemanufacturing formetallic biomedical scaffolds. InComprehensiveMaterialsProcessing;Elsevier: London,UK,2014. 27. Jia, Q.; Gu, D. Selective laser melting additive manufacturing of Inconel 718 superalloy parts: DensiïŹcation,microstructureandproperties. J.Alloy. Compd. 2014,585, 713–721. [CrossRef] 28. Zhang, L.C.; Attar, H. Selective laser melting of titanium alloys and titanium matrix composites for biomedicalapplications:Areview.Adv. Eng.Mater. 2016,18, 463–475. [CrossRef] 29. Wang,X.;Gong,X.;Chou,K.Reviewonpowder-bed laser additivemanufacturingof Inconel 718parts. In Proceedings of the ASME 2015 International Manufacturing Science and Engineering Conference, Charlotte,NC,USA,8–12 June2015. 30. Lu,Z.;Cao, J.; Jing,H.;Liu,T.;Lu,F.;Wang,D.;Li,D.Reviewofmainmanufacturingprocessesofcomplex hollow turbine blades: This paper critically reviews conventional and advanced technologies used for manufacturinghollowturbineblades.VirtualPhys. Prototyp. 2013,8, 87–95. [CrossRef] 31. Amato,K.;Gaytan,S.;Murr,L.;Martinez,E.;Shindo,P.;Hernandez, J.;Collins,S.;Medina,F.Microstructures andmechanicalbehaviorof Inconel718 fabricatedbyselective lasermelting.ActaMater. 2012,60, 2229–2239. [CrossRef] 32. OyagĂŒe, R.C.; SĂĄnchez-TurriĂłn,A.; LĂłpez-Lozano, J.F.; Montero, J.; Albaladejo,A.; SuĂĄrez-GarcĂ­a,M.J. EvaluationofïŹtofcement-retainedimplant-supported3-unit structures fabricatedwithdirectmetal laser sinteringandvacuumcastingtechniques.Odontology2012,100, 249–253. [CrossRef] [PubMed] 33. Sercombe,T.;Li,X.Selective lasermeltingofaluminiumandaluminiummetalmatrixcomposites: Review. Mater. Technol. 2016,31, 77–85. [CrossRef] 34. Kruth, J.-P.;Mercelis,P.; vanVaerenbergh, J.; Froyen,L.;Rombouts,M.Bindingmechanisms inselective lasersinteringandselective lasermelting.RapidPrototyp. J.2005,11, 26–36. [CrossRef] 35. Yadroitsev, I.; Smurov, I. Surfacemorphology inselective lasermeltingofmetalpowders. Phys. Procedia 2011,12, 264–270. [CrossRef] 36. Fischer,P.;Romano,V.;Weber,H.-P.;Karapatis,N.;Boillat,E.;Glardon,R.Sinteringofcommerciallypure titaniumpowderwithaNd:YAGlasersource.ActaMater. 2003,51, 1651–1662. [CrossRef] 37. Yadroitsev, I.;Yadroitsava, I.; Smurov, I. Strategyof fabricationofcomplexshapepartsbasedonthestability ofsingle lasermeltedtrack.SPIEProc. 2011,7921. [CrossRef] 38. Li,Y.;Gu,D.Parametricanalysisof thermalbehaviorduringselective lasermeltingadditivemanufacturing ofaluminumalloypowder.Mater.Des. 2014,63, 856–867. [CrossRef] 33
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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