articleTop 1% cited
Fatigue behavior of porous biomaterials manufactured using selective laser melting
Materials Science and Engineering C · 2013 · Vol. 33(8) · pp. 4849–4858
Saber Amin Yavari✉(Delft University of Technology)Ruben Wauthlé(KU Leuven)Johan van der Stok(Erasmus University Rotterdam)A.C. Riemslag(Delft University of Technology)M. Janssen(Delft University of Technology)Michiel Mulier(KU Leuven)Jean‐Pierre Kruth(KU Leuven)Jan Schrooten(KU Leuven)Harrie Weinans(Delft University of Technology)Amir A. Zadpoor(Delft University of Technology)
Additive Manufacturing Materials and ProcessesTitanium Alloys Microstructure and PropertiesBone Tissue Engineering MaterialsPorositySelective laser meltingMaterials scienceTitanium alloyBiomaterialComposite materialFatigue limitTitaniumPorous mediumLaser power scaling
MeSH terms
AlloysBiocompatible MaterialsLasersTitaniumPorosityCompressive StrengthPhase Transition
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References
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References
The effect of pore geometry on the in vitro biological behavior of human periosteum-derived cells seeded on selective laser-melted Ti6Al4V bone scaffolds
Acta Biomaterialia · 2012 · 753 citations
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Biomaterials · 1998 · 3,453 citations
A study of the microstructural evolution during selective laser melting of Ti–6Al–4V
Acta Materialia · 2010 · 2,833 citations
Mechanical properties of open-cell metallic biomaterials manufactured using additive manufacturing
Materials & Design (1980-2015) · 2013 · 398 citations
Cellular Ti–6Al–4V structures with interconnected macro porosity for bone implants fabricated by selective electron beam melting
Acta Biomaterialia · 2008 · 806 citations
Fabrication methods of porous metals for use in orthopaedic applications
Biomaterials · 2006 · 1,366 citations
Porous NiTi for bone implants: A review
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Biomaterial developments for bone tissue engineering
Biomaterials · 2000 · 1,632 citations
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