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Metals 2016,6, 280
Accordingto the topologyoptimizationconditionsabove, theoriginalpartmodelwasdefinedas
showninFigure17a. The topologyoptimizationmethodwasused toget the frameworkshownin
Figure17b. Thefinalstructureafteroptimizationcanbeseen inFigure17c. Thethicknessof frameη
wastakenasadesignparameter.
Figure17.TheoriginalL-shapemodel (a),L-shapeframeobtainedbytopologyoptimization(b), the
finalL-shapeframeafteroptimization(c).
3.3.DetailDesign
Therearesomedetailedstructuressuchasthefillet,chamfer,keyway,gearteeth,splines,mounting
holeandsoonwhichare importantwhenthepartscooperatewithothercomponents. Toensure the
functionsof thesestructures, theyshouldnotberedesigned.
After thereconstructionof thestructures, stressconcentrationmayoccurbecauseof thesharp
change of the cross-section area caused by the intersecting frame. In order to improve the parts’
performance, the fillets of the frames need to be considered, which can help to reduce the local
stressconcentration.
Thereare still somepowders in the closedholesof the redesignedpartsmanufacturedby the
SLMprocesswhichwill increase theweightandcostof thecomponents. Thus,powderoutlets should
beconsideredtodischargepowderssmoothly. ThefilletsandpowderoutletsareshowninFigure18.
Figure18.ThefilletsandpowderoutletsofSLMparts.
3.4.Application
3.4.1.Case1: Stopper
The stopperwasused in an automatic device to avoid the forwardmovement of this device.
Theactual installationanduseconditionsof thispartareshowninFigure19.
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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