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A Study on Compression Behavior and Fracture Morphology in Dumbbell-Shaped Ti6Al4V Lattice Structures Fabricated through Additive Manufacturing

  • 20-12-2024
  • Original Research Article
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Abstract

The article delves into the compression behavior and fracture morphology of Ti6Al4V lattice structures fabricated via laser powder bed fusion (LPBF). It examines the impact of varying strut sizes and relative densities on mechanical properties, such as yield strength and compressive strength. The study employs finite element analysis (FEA) and experimental methods to validate the deformation behavior and stress distribution within the lattice structures. Notably, the incorporation of dumbbell-shaped reinforcements at nodal sites is shown to enhance load distribution and structural integrity, leading to a more controlled and progressive failure mechanism. The microstructural analysis reveals the formation of the martensitic α′ phase, which influences the material's mechanical properties. The article also discusses the implications of residual stresses and dislocation densities on the overall performance of the lattice structures. By comparing the results with similar structures, the study underscores the advantages of the dumbbell-shaped design in improving mechanical performance and energy absorption capabilities.

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Title
A Study on Compression Behavior and Fracture Morphology in Dumbbell-Shaped Ti6Al4V Lattice Structures Fabricated through Additive Manufacturing
Authors
P. Parameswaran
Saurabh Gairola
D. Kesavan
R. Jayaganthan
Publication date
20-12-2024
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 17/2025
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-024-10560-0
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    in-adhesives, MKVS, Ecoclean/© Ecoclean, Hellmich GmbH/© Hellmich GmbH, Krahn Ceramics/© Krahn Ceramics, Kisling AG/© Kisling AG, ECHTERHAGE HOLDING GMBH&CO.KG - VSE