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3D Printing of Metals
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Metals 2017,7, 2 111. Zhang,L.-C.;Attar,H.;Calin,M.;Eckert, J.Reviewonmanufacturebyselective lasermeltingandproperties of titaniumbasedmaterials forbiomedicalapplications.Mater. Technol. 2016,31, 66–76. [CrossRef] 112. Li,R.;Liu, J.;Shi,Y.;Wang,L.; Jiang,W.Ballingbehaviorofstainlesssteelandnickelpowderduringselective lasermeltingprocess. Int. J.Adv.Manuf. Technol. 2012,59, 1025–1035. [CrossRef] 113. Mercelis, P.; Kruth, J.-P. Residual stresses in selective laser sintering and selective laser melting. RapidPrototyp. J.2006,12, 254–265. [CrossRef] 114. Parande,G.;Manakari,V.;Meenashisundaram,G.K.;Gupta,M.Enhancing thehardness/compression/ dampingresponseofmagnesiumbyreinforcingwithbiocompatiblesilicananoparticulates. Int. J.Mater.Res. 2016,107, 1091–1099. [CrossRef] 115. Casavola,C.;Campanelli, S.;Pappalettere,C.Preliminary investigationondistributionof residual stress generatedbytheselective lasermeltingprocess. J.StrainAnal. Eng.Des. 2009,44, 93–104. [CrossRef] 116. Shamsaei,N.;Yadollahi,A.;Bian,L.;Thompson,S.M.AnoverviewofDirectLaserDepositionforadditive manufacturing;Part II:Mechanicalbehavior,processparameteroptimizationandcontrol.Addit.Manuf. 2015,8, 12–35. [CrossRef] 117. Atrens,A.; Song,G.-L.;Cao,F.; Shi,Z.;Bowen,P.K.Advances inMgcorrosionandresearchsuggestions. J.Magnes.Alloy.2013,1, 177–200. [CrossRef] 118. Song,G.;Atrens,A.Understandingmagnesiumcorrosion—Aframeworkfor improvedalloyperformance. Adv. Eng.Mater. 2003,5, 837–858. [CrossRef] 119. Ghali, E.CorrosionResistance ofAluminumandMagnesiumAlloys: Understanding,Performance, andTesting; JohnWiley&Sons:Hoboken,NJ,USA,2010. 120. Singh,A.;Harimkar,S.P.Lasersurfaceengineeringofmagnesiumalloys:Areview. JOM2012,64, 716–733. [CrossRef] 121. Guan,Y.;Zhou,W.;Zheng,H.;Li,Z.SolidiïŹcationmicrostructureofAZ91DMgalloyafter laser surface melting.Appl. Phys.A2010,101, 339–344. [CrossRef] 122. Liu,C.;Liang, J.;Zhou, J.;Wang,L.;Li,Q.Effectof lasersurfacemeltingonmicrostructureandcorrosion characteristicsofAM60Bmagnesiumalloy.Appl. Surf. Sci. 2015,343, 133–140. [CrossRef] 123. Cui,Z.-Q.; Shi,H.-X.;Wang,W.-X.; Xu,B.-S.Laser surfacemeltingAZ31Bmagnesiumalloywith liquid nitrogen-assistedcooling.Trans.Nonferr.Met. Soc. China2015,25, 1446–1453. [CrossRef] 124. Taltavull,C.;Torres,B.;Lopez,A.;Rodrigo,P.;Otero,E.;Atrens,A.;Rams, J.Corrosionbehaviourof laser surfacemeltedmagnesiumalloyAZ91D.Mater.Des. 2014,57, 40–50. [CrossRef] 125. Paital, S.R.; Bhattacharya,A.;Moncayo,M.; Ho, Y.H.;Mahdak,K.; Nag, S.; Banerjee, R.; Dahotre,N.B. Improved corrosion andwear resistance ofMg alloys via laser surfacemodiïŹcation of Al onAZ31B. Surf.Coat. Technol. 2012,206, 2308–2315. [CrossRef] 126. Coy,A.;Viejo,F.;Garcia-Garcia,F.;Liu,Z.; Skeldon,P.;Thompson,G.Effectofexcimer lasersurfacemelting onthemicrostructureandcorrosionperformanceof thediecastAZ91Dmagnesiumalloy.Corros. Sci. 2010, 52, 387–397. [CrossRef] 127. Raman, R.S.; Murray, S.; Brandt,M. Laser assistedmodiïŹcation of surfacemicrostructure for localised corrosionresistanceofmagnesiumalloys.Surf. Eng. 2013,23, 107–111. [CrossRef] 128. Abbas,G.;Liu,Z.;Skeldon,P.Corrosionbehaviourof laser-meltedmagnesiumalloys.Appl. Surf. Sci. 2005, 247, 347–353. [CrossRef] 129. Makar,G.;Kruger, J.Corrosionofmagnesium. Int.Mater. Rev. 2013,38, 138–153. [CrossRef] 130. Liu,C.;Li,Q.;Liang, J.;Zhou, J.;Wang,L.Microstructureandcorrosionbehaviourof lasersurfacemelting treatedWE43magnesiumalloy.RSCAdv. 2016,6, 30642–30651. [CrossRef] 131. Song,G.Controlofbiodegradationofbiocompatablemagnesiumalloys.Corros. Sci. 2007,49, 1696–1701. [CrossRef] 132. Gu,X.;Li,N.;Zheng,Y.;Ruan,L. Invitrodegradationperformanceandbiological responseofaMg-Zn-Zr alloy.Mater. Sci. Eng. B2011,176, 1778–1784. [CrossRef] 133. Dai,N.;Zhang,L.-C.;Zhang, J.;Chen,Q.;Wu,M.Corrosionbehaviorof selective lasermeltedTi-6Al-4V alloy inNaClsolution.Corros. Sci. 2016,102, 484–489. [CrossRef] 134. Dai,N.; Zhang, L.-C.; Zhang, J.; Zhang, X.; Ni,Q.; Chen, Y.;Wu,M.; Yang,C.Distinction in corrosion resistance of selective lasermeltedTi-6Al-4V alloy ondifferent planes. Corros. Sci. 2016, 111, 703–710. [CrossRef] 37
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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