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Metals 2017,7, 91 19. Weißmann,V.;Bader,R.;Hansmann,H.;Laufer,N. Influenceof thestructuralorientationonthemechanical propertiesof selective lasermeltedTi6Al4Vopen-porousscaffolds.Mater.Des. 2016,95, 188–197. [CrossRef] 20. Challis,V.J.;Roberts,A.P.;Grotowski, J.F.;Zhang,L.C.;Sercombe,T.B.Prototypes forBoneImplantScaffold DesignedviaTopolgyOptimationandManufacturedbySolidFreeformFabrication.Adv. Eng.Mater. 2010, 12, 1106–1110. [CrossRef] 21. Weißmann,V.;Wieding, J.; Hansmann,H.; Laufer,N.;Wolf,A.; Bader, R. SpecificYieldingof Selective Laser-MeltedTi6Al4VOpen-PorousScaffoldsasaFunctionofUnitCellDesignandDimensions.Metals 2016,6, 166. [CrossRef] 22. Mahshid,R.;Hansen,H.N.;Højbjerre,K.L. Strengthanalysis andmodelingof cellular lattice structures manufactured using selective laser melting for tooling applications. Mater. Des. 2016, 104, 276–283. [CrossRef] 23. Xu, S.; Shen, J.; Zhou, S.; Huang, X.; Xie, Y.M.Design of lattice structureswith controlled anisotropy. Mater.Des. 2016,93, 443–447. [CrossRef] 24. Rashed,M.G.;Ashraf,M.;Mines,R.A.;Hazell,P.J.Metallicmicrolatticematerialsacurrent stateof thearton manufacturing,mechanicalpropertiesandapplications.Mater.Des. 2016,95, 518–533. [CrossRef] 25. Wauthle,R.;Vrancken,B.;Beynaerts,B.; Jorisson,K.;Schrooten, J.;Kruth, J.P.;vanHumbeeck, J.Effectsof buildorientation andheat treatment on themicrostructure andmechanical properties of selective laser meltedTi6Al4Vlatticestructures.Addit.Manuf. 2015,5, 77–84. [CrossRef] 26. Cain,V.; Thijs, L.; vanHumbeeck, J.; vanHooreweder, B.; Knutsen, R.Crackpropagation and fracture toughnessofTi6Al4Valloyproducedbyselective lasermelting.Addit.Manuf. 2015,5, 68–76. [CrossRef] 27. Wu,M.-W.;Lai,P.-H.;Chen, J.-K.Anisotropyin the impact toughnessofselective laser letedTi6Al4Valloy. Mater. Sci. Eng.A2015,650, 295–299. [CrossRef] 28. DeWild,M.;Schumacher,R.;Mayer,K.; Schkommodau,E.;Thoma,D.;Bredell,M.;Gujer,A.K.;Grätz,K.W.; Weber, F.E. Bone regeneration by the osteoconductivity of porous titanium implantsmanufactured by selective lasermelting: Ahistological andmicro computed tomographystudy in the rabbit. TissueEng. PartA2013,19, 2645–2654. [CrossRef] [PubMed] 29. Kumar,A.;Nune,K.C.;Murr,L.E.;Misra,R.K.BiocompatibilityandMechanicalBehaviourof3DScaffolds forbiomedicaldevices: Process-structure-propertyparadigm. Int.Mater. Rev. 2016,61, 20–45. [CrossRef] 30. Taniguchi,N.;Fukibayashi,S.;Takemoto,M.;Sasaki,K.;Otsuki,B.;Nakamara,T.;Matsuhita,T.;Kokubo,T.; Matsuda, S. Effect of pore size on bone ingrowth into porous titanium implants fabricated by dditive manufacturinganinvivoexperiment.Mater. Sci. Eng.C2015,59, 690–701. [CrossRef] [PubMed] 31. Labeas,G.N.; Sunaric,M.M. Investigationon the StaticResponse andFailureProcess ofMetallicOpen LatticeCellularStructures.Strain2010,46, 195–204. [CrossRef] 32. Ahmadi,S.M.;Campoli,G.;Yavari,S.A.;Sajadi,B.;Wauthle,R.;Schrooten, J.;Weinans,H.;Zadpoor,A.A. Mechanicalbehaviorof regularopen-cellporousbiomaterialsmadeofdiamondlatticeunit cells. J.Mech. Behav. Biomed.Mater. 2014,34, 106–115. [CrossRef] [PubMed] 33. Ushijima,K.;Cantwell,W.J.;Mines,R.A.; Tsopanos, S.; Smith,M.An investigation into thecompressive propertiesof stainlesssteelmicro-latticestructures. J.Sandw. Struct.Mater. 2010,13, 303–329. [CrossRef] 34. Suard,M.;Martin,G.;Lhuissier,P.;Dendievel,R.;Vignat,F.;Blandin, J.-J.Mechanicalequivalentdiameterof singlestruts for thestiffnesspredictionof latticestructuresproducedbyelectronbeammelting.Addit.Manuf. 2015,8, 124–131. [CrossRef] 35. Desphande,V.S.;Ashby,M.F.;Fleck,N.A.Foamtopologybendingversusstretchingdominatedarchitectures. ActaMater. 2001,49, 1035–1040. 36. Mazur,M.; Leary,M.; Sun, S.; Vcelka,M.; Shidid,D.; Brandt,M.Deformation and failure behaviour of Ti-6Al-4Vlatticestructuresmanufacturedbyselective lasermelting(SLM). Int. J.Adv.Manuf. Technol. 2016, 84, 1391–1411. [CrossRef] 37. McKnown, S.; Shen, Y.; Brooks, W.K.; Sutcliffe, C.J.; Cantwell, W.J.; Langdon, G.S.; Nurrick, G.N.; Theobald,M.D.Thequasi-staticandblast loadingresponseof latticestructures. Int. J. ImpactEng. 2008,35, 795–810. [CrossRef] 38. Gong,H.;Rafi,K.;Gu,H.;Ram,G.J.; Starr,T.;Strucker,B. Influenceofdefectsonmechanicalpropertiesof Ti–6Al–4Vcomponentsproducedbyselective lasermeltingandelectronbeammelting.Mater.Des. 2015,86, 545–554. [CrossRef] 72
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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