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Metals 2016,6, 313
Figure2.Processparametersetofvarious formingmorphology inasingle-layersinglepass (SLSP).
Theprocessparametersweredividedintofourcategories.Witharelativelylowdepositionvelocity
andhighflowrate, CategoryAcaneasily cause anaccumulationof themelt because the feeding
speedof themelt is toohigh for thegivendepositionvelocity, leading toasignificant incrementof
themicro-coatingwidth andanaccumulationofmoltenmetal at the starting and stoppingof the
SLSP.Theseproblemsremainunfavorable to thesuccessfuloperationof themultilayer single-pass
(MLSP)process. Asa result, the formingefficiencywas low, as shown inFigure 3a. ForCategory
C,with a highdeposition velocity and a lowflowrate, themoltenmetal draggeddue to surface
tension,whichcausednecking. Thepositionofnecking leads toadecrease inmechanicalproperties
in SLSP. The subsequent experiments in RegionCwere consequently discarded, as presented in
Figure3c. ForCategoryD,withahighflowrateanddepositionvelocity,microvibrationoccurred
in the3D-platform.Hence, the formingdefectswereaggravated, resulting inburranddistortions,
as shown in Figure 3d. ForCategory B, the flow ratematchedwellwith the deposition velocity,
andthesurfacequalitywassatisfactory,asshowninFigure3b.
Figure3.Various formingmorphologywithdifferentcombinationsofprocessparameters. (a)Melt
flowing. (b)Excellent formation. (c) Incomplete fusion. (d)Uncontrolledarea.
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Buch 3D Printing of Metals"
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