Seite - 52 - in 3D Printing of Metals
Bild der Seite - 52 -
Text der Seite - 52 -
metals
Article
ComparisonofSingleTi6Al4VStrutsMadeUsing
SelectiveLaserMeltingandElectronBeamMelting
Subject toPartOrientation
VolkerWeißmann1,2,*,PhilippDrescher3,RainerBader2,HermannSeitz 3,HaraldHansmann1
andNicoLaufer 4
1 FacultyofEngineering,UniversityofAppliedScience,Technology,BusinessandDesign,
Philipp-Müller-Str. 14,23966Wismar,Germany;h.hansmann@ipt-wismar.de
2 BiomechanicsandImplantTechnologyResearchLaboratory,DepartmentofOrthopedics,
UniversityMedicineRostock,DoberanerStrasse142,18057Rostock,Germany;
rainer.bader@med.uni-rostock.de
3 FluidicTechnologyandMicrofluidics,FacultyofMechanicalEngineeringandMarineTechnology,
UniversityofRostock,18059Rostock,Germany;philipp.drescher@uni-rostock.de (P.D.);
hermann.seitz@uni-rostock.de (H.S.)
4 Institute forPolymerTechnologiese.V.,AlterHolzhafen19,23966Wismar,Germany; laufer@ipt-wismar.de
* Correspondence:weissmann@ipt-wismar.de;Tel.:+49-03841-758-2388;Fax:+49-03841-758-2399
AcademicEditor:ManojGupta
Received: 1December2016;Accepted: 9March2017;Published: 11March2017
Abstract: The use of additivemanufacturing technologies to produce lightweight or functional
structures iswidespread. Especially Ti6Al4V plays an important role in this development field
andpartsaremanufacturedandanalyzedwith theaimtocharacterize themechanicalproperties
of open-porous structures and to generate scaffolds with properties specific to their intended
application. AnSLMandanEBMprocesswereused respectively to fabricate theTi6Al4Vsingle
struts. Formechanical characterization,uniaxial compression testsandhardnessmeasurementswere
conducted. Furthermore, thestrutsweremanufacturedindifferentorientations for thedetermination
of themechanicalproperties. Roughnessmeasurementsandamicroscopiccharacterizationof the
strutswerealsocarriedout. Somepartswerecharacterizedfollowingheat treatment (hot isostatic
pressing).Afunctionalcorrelationwas foundbetweenthecompressivestrengthandtheslenderness
ratio (λ) as well as the equivalent diameter (d) and the height (L) of EBM and SLM parts.
Hardness investigationsrevealedconsiderabledifferences related to themicrostructure.Aninfluence
of heat treatment aswell as of orientation could be determined. In thiswork, we demonstrate
the influence of the fabricationquality of single struts, the roughness and themicrostructure on
mechanicalpropertiesasa functionoforientation.
Keywords:Ti6Al4V;selectivelasermelting;electronbeammelting;singlestrut;mechanicalproperties
1. Introduction
The development of structures usingmodernAM (additivemanufacturing) technologies is
asteadilygrowingresearchfield inrecentyears.Here, complexandweight-savingstructuresarouse
special interest.One importantgoal is frequently the targeteddimensioningofmechanicalproperties.
The progress in additivemanufacturing technologymakes thismore tangible. An essential
prerequisite is to develop a better understanding of the technological contexts of additive
manufacturingtechnologies.
Of strong interest is the relationship between the materials used, the process parameters,
especially in the applicationfield of open-porous load-bearing lattice structures, and their effects
Metals 2017,7, 91 52 www.mdpi.com/journal/metals
zurück zum
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